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  1. .gitattributes +181 -0
  2. 20260525_081253/nas_best.json +154 -0
  3. 20260525_081253/nas_log.csv +0 -0
  4. 20260525_081253/nas_top1.json +154 -0
  5. 20260525_081253/nas_top2.json +154 -0
  6. 20260525_081253/nas_top3.json +154 -0
  7. 20260525_081253/trial_000/2814893252_nxon2_430391171_1_Completed_2026-05-25T13-47-05Z.json +3 -0
  8. 20260525_081253/trial_000/nxon2_430391171__BestFitness.json +0 -0
  9. 20260525_081253/trial_000/nxon2_430391171__BestFoodFound.json +0 -0
  10. 20260525_081253/trial_000/nxon2_430391171__BestFoodTaken.json +0 -0
  11. 20260525_081253/trial_000/nxon2_430391171__BestMates.json +0 -0
  12. 20260525_081253/trial_000/nxon2_430391171__BestTimeLived.json +0 -0
  13. 20260525_081253/trial_000/nxon2_430391171__BestWorldExplorer.json +0 -0
  14. 20260525_081253/trial_000/nxon2_430391171__KeyMetrics.txt +3 -0
  15. 20260525_081253/trial_000/nxon2_430391171__LifespanLog.txt +54 -0
  16. 20260525_081253/trial_000/nxon2_430391171__MembraneDiag.txt +0 -0
  17. 20260525_081253/trial_000__arch.json +50 -0
  18. 20260525_081253/trial_001/8122857402_nxon2_024722855_1_Completed_2026-05-25T11-39-32Z.json +3 -0
  19. 20260525_081253/trial_001/nxon2_024722855__BestFitness.json +0 -0
  20. 20260525_081253/trial_001/nxon2_024722855__BestFoodFound.json +0 -0
  21. 20260525_081253/trial_001/nxon2_024722855__BestFoodTaken.json +0 -0
  22. 20260525_081253/trial_001/nxon2_024722855__BestMates.json +0 -0
  23. 20260525_081253/trial_001/nxon2_024722855__BestTimeLived.json +0 -0
  24. 20260525_081253/trial_001/nxon2_024722855__BestWorldExplorer.json +0 -0
  25. 20260525_081253/trial_001/nxon2_024722855__KeyMetrics.txt +0 -0
  26. 20260525_081253/trial_001/nxon2_024722855__LifespanLog.txt +59 -0
  27. 20260525_081253/trial_001/nxon2_024722855__MembraneDiag.txt +0 -0
  28. 20260525_081253/trial_001__arch.json +50 -0
  29. 20260525_081253/trial_002/8051876568_nxon2_117492643_1_Completed_2026-05-25T11-15-30Z.json +3 -0
  30. 20260525_081253/trial_002/nxon2_117492643__BestFitness.json +0 -0
  31. 20260525_081253/trial_002/nxon2_117492643__BestFoodFound.json +0 -0
  32. 20260525_081253/trial_002/nxon2_117492643__BestFoodTaken.json +0 -0
  33. 20260525_081253/trial_002/nxon2_117492643__BestMates.json +0 -0
  34. 20260525_081253/trial_002/nxon2_117492643__BestTimeLived.json +0 -0
  35. 20260525_081253/trial_002/nxon2_117492643__BestWorldExplorer.json +0 -0
  36. 20260525_081253/trial_002/nxon2_117492643__KeyMetrics.txt +3 -0
  37. 20260525_081253/trial_002/nxon2_117492643__LifespanLog.txt +45 -0
  38. 20260525_081253/trial_002/nxon2_117492643__MembraneDiag.txt +0 -0
  39. 20260525_081253/trial_002__arch.json +50 -0
  40. 20260525_081253/trial_003/0113300164_nxon2_729357211_1_Completed_2026-05-25T12-11-02Z.json +3 -0
  41. 20260525_081253/trial_003/nxon2_729357211__BestFitness.json +0 -0
  42. 20260525_081253/trial_003/nxon2_729357211__BestFoodFound.json +0 -0
  43. 20260525_081253/trial_003/nxon2_729357211__BestFoodTaken.json +0 -0
  44. 20260525_081253/trial_003/nxon2_729357211__BestMates.json +0 -0
  45. 20260525_081253/trial_003/nxon2_729357211__BestTimeLived.json +0 -0
  46. 20260525_081253/trial_003/nxon2_729357211__BestWorldExplorer.json +0 -0
  47. 20260525_081253/trial_003/nxon2_729357211__KeyMetrics.txt +3 -0
  48. 20260525_081253/trial_003/nxon2_729357211__LifespanLog.txt +56 -0
  49. 20260525_081253/trial_003/nxon2_729357211__MembraneDiag.txt +0 -0
  50. 20260525_081253/trial_003__arch.json +50 -0
.gitattributes CHANGED
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20260525_081253/nas_best.json ADDED
@@ -0,0 +1,154 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ {
2
+ "_meta": {
3
+ "name": "nas_best_t093",
4
+ "version": "NxonArchNAS v0.6 (v187)",
5
+ "description": "Architecture found by NAS \u2014 trial 93, fitness 5.9166. Plug-and-play compatible with architectures/default.json: drop this file into architectures/ or load with NEURAXON_ARCH=path/to/this.json python main.py",
6
+ "source": "NxonArchNAS",
7
+ "rank": 1,
8
+ "trial_id": 93,
9
+ "fitness": 5.916625699658419,
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+ "saved_at": "2026-05-26T03:37:51",
11
+ "notes": [
12
+ "Sections inherited from default.json: healthy_bands (unchanged target ranges)",
13
+ "Sections overridden by NAS: biology, neural, operating_ranges, genetic_lottery",
14
+ "Load with NEURAXON_ARCH=path/to/this.json python main.py"
15
+ ]
16
+ },
17
+ "biology": {
18
+ "_doc": "Game-world / bio-inspired dynamics. Independent of neural architecture \u2014 change these to study survival pressure without touching the brain.",
19
+ "metabolic_ramp_per_sec": 11.107312789105478,
20
+ "_doc_metabolic_ramp_per_sec": "Multiplier added to food drain and metabolic_rate per second of idle. With 1s idle \u2192 factor (1 + 10*1) = 11\u00d7. Capped by max_atrophy.",
21
+ "max_atrophy": 5.396242942128863,
22
+ "_doc_max_atrophy": "Hard cap on the atrophy multiplier (v151 fix). 5.0 = max 5\u00d7 normal drain even after extended idle.",
23
+ "metabolic_rate_abs_cap_multiple": 44.08539023955072,
24
+ "_doc_metabolic_rate_abs_cap_multiple": "Absolute ceiling on the per-NxEr metabolic_rate, expressed as a multiple of the initial value (v153 F-1).",
25
+ "start_food_default": 25.0,
26
+ "food_respawn_default": 400,
27
+ "food_sources_default": 50,
28
+ "_doc_food": "Defaults if the user doesn't change them via the menu sliders. The menu still overrides at startup.",
29
+ "mate_cooldown_seconds": 10,
30
+ "circadian_cycle_ticks": 638,
31
+ "idle_explore_seconds": 1.8150915806666064,
32
+ "explore_probability": 0.6198402109854304,
33
+ "_doc_idle_explore": "v152 idle-exploration safety net. If an NxEr has been idle \u2265 idle_explore_seconds, with explore_probability per tick, override motor output with a random direction."
34
+ },
35
+ "neural": {
36
+ "_doc": "Network architecture (topology + per-neuron parameters). Change these to test different brain configurations.",
37
+ "num_input_neurons": 10,
38
+ "num_output_neurons": 7,
39
+ "num_hidden_neurons_default": 23,
40
+ "_doc_neuron_counts": "Inputs: 10 sensory channels (movement, encounter, terrain, hunger, sight, smell, daynight, temp, proprio, song). Outputs: 7 motor (MoveX, MoveY, Social, MateIntent, GiveFood, Resting, Sing).",
41
+ "connection_probability": 0.29813856580352527,
42
+ "afferent_synapse_strength": 0.6747188527003024,
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+ "proprioceptive_afferent_gain": 1.8,
44
+ "sensory_input_gain": 0.9,
45
+ "firing_threshold_excitatory": 0.6498673508021463,
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+ "firing_threshold_inhibitory": -0.55,
47
+ "spontaneous_firing_rate": 0.01472132217308853,
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+ "intrinsic_timescale_default": 15.0910748338826,
49
+ "resting_potential_decay": 0.16259197560300098,
50
+ "sensorimotor_coupling": 0.2739806598929556,
51
+ "_doc_sensorimotor_coupling": "v164 \u2014 multiplier on input\u2192output direct-edge probability. 0.0 = pre-v164 (uniform random links). 1.0 = 2x more sensory\u2192motor connections. 3.0 = 4x. The fitness component sensory_motor_corr was stuck near zero in 1425 v163 trials because there was no architectural bias for sensory pathways. Boost this and plasticity will amplify the correlations.",
52
+ "symmetric_stdp": true,
53
+ "_doc_symmetric_stdp": "v169 (v4.77) \u2014 opt-in for MultiNeuraxon2 Bug #3 fix. False (default) preserves v161-v168 asymmetric STDP where state==-1 is invisible to plasticity (only +1-driven correlations strengthen synapses). True enables signed STDP traces + symmetric (-1,-1) \u2192 LTP and (-1,+1) \u2192 LTD branches. Hypothesised to address the input saturation root cause we worked around with sm_corr_peak in v165. NAS will A/B test it.",
54
+ "refractory_period_ticks": 5,
55
+ "_doc_refractory_period_ticks": "v171 (v4.79) \u2014 number of ticks a neuron is FORCED to state=0 after each firing event (0\u2192\u00b11 transition). 0 = no refractory (v161-v170 behaviour). The v170 @2400s membrane diagnostics showed only 0.6% of samples at state=0 \u2014 the network had become a bistable +1/-1 oscillator with no rest band. The paper's trinary firing model REQUIRES a meaningful 0 state. This parameter restores it. NAS searches 0-12 ticks; biologically realistic values are 1-5 (~ 1-5 game ticks at 10Hz). The membrane potential continues to evolve during refractory so the neuron can fire again immediately after the buffer expires.",
56
+ "post_spike_mp_reset": 0.0029480417919965363,
57
+ "_doc_post_spike_mp_reset": "v172 (v4.80) \u2014 after-hyperpolarization (AHP). Fraction by which membrane_potential is pulled toward 0 after each firing event (0\u2192\u00b11). 0.0 = no reset (v171 behaviour). 1.0 = full reset to mp=0. Combined with refractory_period_ticks, restores the paper's intended trinary dynamics: refractory holds state=0 for N ticks while mp drops back to rest band, then state stays at 0 NATURALLY until inputs push mp past threshold again (rather than immediately re-firing). v171 found refract=1 alone only achieved 0.3% state=0 because mp stayed saturated past threshold; this parameter fixes that by snapping mp back to the rest band. NAS searches 0.0-1.0.",
58
+ "_doc_thresholds": "Membrane firing thresholds (above which trinary_state = +1, below -threshold = -1). The membrane potential is a low-pass filter with intrinsic_timescale ticks. resting_potential_decay multiplies mp by (1-this) each tick before the membrane equation update.",
59
+ "sphere_topology": "chc6",
60
+ "cross_sphere_coupling": 2.7482183637803024,
61
+ "cryst_capacity": 1.9692681215127155,
62
+ "free_energy_beta": 1.2950603629723525
63
+ },
64
+ "operating_ranges": {
65
+ "_doc": "Plasticity / adaptation / brake tunables. Change these to test different learning dynamics.",
66
+ "learning_rate": 0.012781702658640787,
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+ "plasticity_threshold": 0.6052436016686822,
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+ "adaptation_tau_ticks": 30.758553639504157,
69
+ "adaptation_target_excitatory_multiplier": 1.5,
70
+ "adaptation_target_inhibitory_multiplier": 1.0,
71
+ "_doc_adaptation": "v149: adapt builds toward 0.55 \u00d7 multiplier when firing. Tau=20 ticks. Excitatory uses 1.5\u00d7 to bias the brake against +1 dominance.",
72
+ "autoreceptor_coefficient": 0.22068959011382094,
73
+ "autoreceptor_tau_ticks": 150.0,
74
+ "autoreceptor_rate_coeff": 0.35,
75
+ "_doc_autoreceptor": "Per-neuron autoreceptor that subtracts from theta1_eff (v154 sign back to v152 form \u2014 see CHANGELOG_v154 for context).",
76
+ "sensory_boost_function": "tanh",
77
+ "sensory_boost_scale": 1.0,
78
+ "_doc_sensory_boost": "v152 saturating cap: boosted_external = scale * tanh(scale * external_input). Asymptote = scale. 1.0 keeps strong inputs near threshold; lowering compresses further.",
79
+ "plasticity_brake_threshold": 0.5,
80
+ "plasticity_brake_slope": 1.8,
81
+ "plasticity_brake_floor": 0.1,
82
+ "_doc_plasticity_brake": "v152: when input_saturation_fraction > brake_threshold, learning_rate_mod is multiplied by max(floor, 1 - slope*(sat-threshold)).",
83
+ "fitness_g_weight": 0.8978113473991952
84
+ },
85
+ "genetic_lottery": {
86
+ "_doc": "v162 \u2014 per-NxEr trait variation at birth. Each NxEr samples its own value from these ranges, creating the genetic diversity that selection acts on (the missing ingredient that kept M10 heritability at 0 across all 743 v161 NAS trials). Inheritance + mutation at mating carries traits across generations.",
87
+ "metabolic_rate_multiplier_range": [
88
+ 0.7708803171425876,
89
+ 1.2001144214697912
90
+ ],
91
+ "_doc_metabolic_rate_multiplier_range": "At birth each NxEr samples a multiplier uniformly from this range and applies it to its base metabolic_rate. [0.85, 1.15] means \u00b115% variation. Wider = more diversity but also more individuals at survival extremes.",
92
+ "intrinsic_timescale_jitter": 3.885135950388003,
93
+ "_doc_intrinsic_timescale_jitter": "At birth each NxEr adds a uniform random value in [-jitter, +jitter] to intrinsic_timescale_default. 0.0 = no per-NxEr variation (all neurons in all NxErs have same timescale).",
94
+ "firing_threshold_jitter": 0.0499962590497638,
95
+ "_doc_firing_threshold_jitter": "Same idea for firing_threshold_excitatory / inhibitory. 0.04 = \u00b10.04 around the architecture default of 0.55. 0.0 = no per-NxEr variation.",
96
+ "mutation_strength": 0.10711735623775412,
97
+ "_doc_mutation_strength": "When offspring inherit a genetic trait from a parent, the value is perturbed by \u00b1mutation_strength \u00d7 (parent_value). 0.05 = 5% perturbation. 0 = exact copy."
98
+ },
99
+ "healthy_bands": {
100
+ "_doc": "Target ranges shown on the dashboard. NxErs operating in these bands are coloured green.",
101
+ "M1_excitatory_fraction": [
102
+ 0.18,
103
+ 0.28
104
+ ],
105
+ "M2_mean_gate": [
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+ 0.4,
107
+ 0.85
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+ ],
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+ "M3_pac_modulation_idx": [
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+ 0.005,
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+ ],
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+ "M5_branching_ratio": [
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+ 0.92,
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+ 1.1
116
+ ],
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+ "M6_spontaneous_fraction": [
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+ 0.1,
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+ 0.45
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+ ],
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+ "M7_zero_input_mi_ratio": [
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+ 0.4,
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+ 1.2
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+ ],
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+ "M9_transfer_ratio": [
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+ 0.85,
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+ 1.3
128
+ ],
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+ "M10_heritability_r": [
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+ 0.2,
131
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132
+ ],
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+ "sensory_motor_corr": [
134
+ 0.2,
135
+ 1.0
136
+ ],
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+ "pop_mean_idle_seconds": [
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+ 0.0,
139
+ 1.5
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+ ],
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+ "input_saturation_fraction": [
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+ 0.0,
143
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+ ],
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+ "input_locked_fraction": [
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+ ],
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+ "exploration_trigger_rate": [
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+ 0.01,
151
+ 0.4
152
+ ]
153
+ }
154
+ }
20260525_081253/nas_log.csv ADDED
The diff for this file is too large to render. See raw diff
 
20260525_081253/nas_top1.json ADDED
@@ -0,0 +1,154 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ {
2
+ "_meta": {
3
+ "name": "nas_best_t093",
4
+ "version": "NxonArchNAS v0.6 (v187)",
5
+ "description": "Architecture found by NAS \u2014 trial 93, fitness 5.9166. Plug-and-play compatible with architectures/default.json: drop this file into architectures/ or load with NEURAXON_ARCH=path/to/this.json python main.py",
6
+ "source": "NxonArchNAS",
7
+ "rank": 1,
8
+ "trial_id": 93,
9
+ "fitness": 5.916625699658419,
10
+ "saved_at": "2026-05-26T08:41:59",
11
+ "notes": [
12
+ "Sections inherited from default.json: healthy_bands (unchanged target ranges)",
13
+ "Sections overridden by NAS: biology, neural, operating_ranges, genetic_lottery",
14
+ "Load with NEURAXON_ARCH=path/to/this.json python main.py"
15
+ ]
16
+ },
17
+ "biology": {
18
+ "_doc": "Game-world / bio-inspired dynamics. Independent of neural architecture \u2014 change these to study survival pressure without touching the brain.",
19
+ "metabolic_ramp_per_sec": 11.107312789105478,
20
+ "_doc_metabolic_ramp_per_sec": "Multiplier added to food drain and metabolic_rate per second of idle. With 1s idle \u2192 factor (1 + 10*1) = 11\u00d7. Capped by max_atrophy.",
21
+ "max_atrophy": 5.396242942128863,
22
+ "_doc_max_atrophy": "Hard cap on the atrophy multiplier (v151 fix). 5.0 = max 5\u00d7 normal drain even after extended idle.",
23
+ "metabolic_rate_abs_cap_multiple": 44.08539023955072,
24
+ "_doc_metabolic_rate_abs_cap_multiple": "Absolute ceiling on the per-NxEr metabolic_rate, expressed as a multiple of the initial value (v153 F-1).",
25
+ "start_food_default": 25.0,
26
+ "food_respawn_default": 400,
27
+ "food_sources_default": 50,
28
+ "_doc_food": "Defaults if the user doesn't change them via the menu sliders. The menu still overrides at startup.",
29
+ "mate_cooldown_seconds": 10,
30
+ "circadian_cycle_ticks": 638,
31
+ "idle_explore_seconds": 1.8150915806666064,
32
+ "explore_probability": 0.6198402109854304,
33
+ "_doc_idle_explore": "v152 idle-exploration safety net. If an NxEr has been idle \u2265 idle_explore_seconds, with explore_probability per tick, override motor output with a random direction."
34
+ },
35
+ "neural": {
36
+ "_doc": "Network architecture (topology + per-neuron parameters). Change these to test different brain configurations.",
37
+ "num_input_neurons": 10,
38
+ "num_output_neurons": 7,
39
+ "num_hidden_neurons_default": 23,
40
+ "_doc_neuron_counts": "Inputs: 10 sensory channels (movement, encounter, terrain, hunger, sight, smell, daynight, temp, proprio, song). Outputs: 7 motor (MoveX, MoveY, Social, MateIntent, GiveFood, Resting, Sing).",
41
+ "connection_probability": 0.29813856580352527,
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+ "afferent_synapse_strength": 0.6747188527003024,
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+ "proprioceptive_afferent_gain": 1.8,
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+ "sensory_input_gain": 0.9,
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+ "firing_threshold_excitatory": 0.6498673508021463,
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+ "firing_threshold_inhibitory": -0.55,
47
+ "spontaneous_firing_rate": 0.01472132217308853,
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+ "intrinsic_timescale_default": 15.0910748338826,
49
+ "resting_potential_decay": 0.16259197560300098,
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+ "sensorimotor_coupling": 0.2739806598929556,
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+ "_doc_sensorimotor_coupling": "v164 \u2014 multiplier on input\u2192output direct-edge probability. 0.0 = pre-v164 (uniform random links). 1.0 = 2x more sensory\u2192motor connections. 3.0 = 4x. The fitness component sensory_motor_corr was stuck near zero in 1425 v163 trials because there was no architectural bias for sensory pathways. Boost this and plasticity will amplify the correlations.",
52
+ "symmetric_stdp": true,
53
+ "_doc_symmetric_stdp": "v169 (v4.77) \u2014 opt-in for MultiNeuraxon2 Bug #3 fix. False (default) preserves v161-v168 asymmetric STDP where state==-1 is invisible to plasticity (only +1-driven correlations strengthen synapses). True enables signed STDP traces + symmetric (-1,-1) \u2192 LTP and (-1,+1) \u2192 LTD branches. Hypothesised to address the input saturation root cause we worked around with sm_corr_peak in v165. NAS will A/B test it.",
54
+ "refractory_period_ticks": 5,
55
+ "_doc_refractory_period_ticks": "v171 (v4.79) \u2014 number of ticks a neuron is FORCED to state=0 after each firing event (0\u2192\u00b11 transition). 0 = no refractory (v161-v170 behaviour). The v170 @2400s membrane diagnostics showed only 0.6% of samples at state=0 \u2014 the network had become a bistable +1/-1 oscillator with no rest band. The paper's trinary firing model REQUIRES a meaningful 0 state. This parameter restores it. NAS searches 0-12 ticks; biologically realistic values are 1-5 (~ 1-5 game ticks at 10Hz). The membrane potential continues to evolve during refractory so the neuron can fire again immediately after the buffer expires.",
56
+ "post_spike_mp_reset": 0.0029480417919965363,
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+ "_doc_post_spike_mp_reset": "v172 (v4.80) \u2014 after-hyperpolarization (AHP). Fraction by which membrane_potential is pulled toward 0 after each firing event (0\u2192\u00b11). 0.0 = no reset (v171 behaviour). 1.0 = full reset to mp=0. Combined with refractory_period_ticks, restores the paper's intended trinary dynamics: refractory holds state=0 for N ticks while mp drops back to rest band, then state stays at 0 NATURALLY until inputs push mp past threshold again (rather than immediately re-firing). v171 found refract=1 alone only achieved 0.3% state=0 because mp stayed saturated past threshold; this parameter fixes that by snapping mp back to the rest band. NAS searches 0.0-1.0.",
58
+ "_doc_thresholds": "Membrane firing thresholds (above which trinary_state = +1, below -threshold = -1). The membrane potential is a low-pass filter with intrinsic_timescale ticks. resting_potential_decay multiplies mp by (1-this) each tick before the membrane equation update.",
59
+ "sphere_topology": "chc6",
60
+ "cross_sphere_coupling": 2.7482183637803024,
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+ "cryst_capacity": 1.9692681215127155,
62
+ "free_energy_beta": 1.2950603629723525
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+ },
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+ "operating_ranges": {
65
+ "_doc": "Plasticity / adaptation / brake tunables. Change these to test different learning dynamics.",
66
+ "learning_rate": 0.012781702658640787,
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+ "plasticity_threshold": 0.6052436016686822,
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+ "adaptation_tau_ticks": 30.758553639504157,
69
+ "adaptation_target_excitatory_multiplier": 1.5,
70
+ "adaptation_target_inhibitory_multiplier": 1.0,
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+ "_doc_adaptation": "v149: adapt builds toward 0.55 \u00d7 multiplier when firing. Tau=20 ticks. Excitatory uses 1.5\u00d7 to bias the brake against +1 dominance.",
72
+ "autoreceptor_coefficient": 0.22068959011382094,
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+ "autoreceptor_tau_ticks": 150.0,
74
+ "autoreceptor_rate_coeff": 0.35,
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+ "_doc_autoreceptor": "Per-neuron autoreceptor that subtracts from theta1_eff (v154 sign back to v152 form \u2014 see CHANGELOG_v154 for context).",
76
+ "sensory_boost_function": "tanh",
77
+ "sensory_boost_scale": 1.0,
78
+ "_doc_sensory_boost": "v152 saturating cap: boosted_external = scale * tanh(scale * external_input). Asymptote = scale. 1.0 keeps strong inputs near threshold; lowering compresses further.",
79
+ "plasticity_brake_threshold": 0.5,
80
+ "plasticity_brake_slope": 1.8,
81
+ "plasticity_brake_floor": 0.1,
82
+ "_doc_plasticity_brake": "v152: when input_saturation_fraction > brake_threshold, learning_rate_mod is multiplied by max(floor, 1 - slope*(sat-threshold)).",
83
+ "fitness_g_weight": 0.8978113473991952
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+ },
85
+ "genetic_lottery": {
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+ "_doc": "v162 \u2014 per-NxEr trait variation at birth. Each NxEr samples its own value from these ranges, creating the genetic diversity that selection acts on (the missing ingredient that kept M10 heritability at 0 across all 743 v161 NAS trials). Inheritance + mutation at mating carries traits across generations.",
87
+ "metabolic_rate_multiplier_range": [
88
+ 0.7708803171425876,
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+ 1.2001144214697912
90
+ ],
91
+ "_doc_metabolic_rate_multiplier_range": "At birth each NxEr samples a multiplier uniformly from this range and applies it to its base metabolic_rate. [0.85, 1.15] means \u00b115% variation. Wider = more diversity but also more individuals at survival extremes.",
92
+ "intrinsic_timescale_jitter": 3.885135950388003,
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+ "_doc_intrinsic_timescale_jitter": "At birth each NxEr adds a uniform random value in [-jitter, +jitter] to intrinsic_timescale_default. 0.0 = no per-NxEr variation (all neurons in all NxErs have same timescale).",
94
+ "firing_threshold_jitter": 0.0499962590497638,
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+ "_doc_firing_threshold_jitter": "Same idea for firing_threshold_excitatory / inhibitory. 0.04 = \u00b10.04 around the architecture default of 0.55. 0.0 = no per-NxEr variation.",
96
+ "mutation_strength": 0.10711735623775412,
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+ "_doc_mutation_strength": "When offspring inherit a genetic trait from a parent, the value is perturbed by \u00b1mutation_strength \u00d7 (parent_value). 0.05 = 5% perturbation. 0 = exact copy."
98
+ },
99
+ "healthy_bands": {
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+ "_doc": "Target ranges shown on the dashboard. NxErs operating in these bands are coloured green.",
101
+ "M1_excitatory_fraction": [
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+ 0.18,
103
+ 0.28
104
+ ],
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+ "M2_mean_gate": [
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+ 0.4,
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+ 0.85
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+ ],
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+ "M3_pac_modulation_idx": [
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+ 0.005,
111
+ 0.1
112
+ ],
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+ "M5_branching_ratio": [
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+ 0.92,
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+ 1.1
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+ ],
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+ "M6_spontaneous_fraction": [
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+ 0.1,
119
+ 0.45
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+ ],
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+ "M7_zero_input_mi_ratio": [
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+ 0.4,
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+ 1.2
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+ ],
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+ "M9_transfer_ratio": [
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+ 0.85,
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+ 1.3
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+ ],
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+ "M10_heritability_r": [
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+ 0.2,
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+ 1.0
132
+ ],
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+ "sensory_motor_corr": [
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+ 0.2,
135
+ 1.0
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+ ],
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+ "pop_mean_idle_seconds": [
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+ 0.0,
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+ 1.5
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+ ],
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+ "input_saturation_fraction": [
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+ 0.0,
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+ 0.3
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+ ],
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+ "input_locked_fraction": [
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+ 0.0,
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+ 0.2
148
+ ],
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+ "exploration_trigger_rate": [
150
+ 0.01,
151
+ 0.4
152
+ ]
153
+ }
154
+ }
20260525_081253/nas_top2.json ADDED
@@ -0,0 +1,154 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ {
2
+ "_meta": {
3
+ "name": "nas_best_t105",
4
+ "version": "NxonArchNAS v0.6 (v187)",
5
+ "description": "Architecture found by NAS \u2014 trial 105, fitness 5.6133. Plug-and-play compatible with architectures/default.json: drop this file into architectures/ or load with NEURAXON_ARCH=path/to/this.json python main.py",
6
+ "source": "NxonArchNAS",
7
+ "rank": 2,
8
+ "trial_id": 105,
9
+ "fitness": 5.6132940976602015,
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+ "saved_at": "2026-05-26T08:41:59",
11
+ "notes": [
12
+ "Sections inherited from default.json: healthy_bands (unchanged target ranges)",
13
+ "Sections overridden by NAS: biology, neural, operating_ranges, genetic_lottery",
14
+ "Load with NEURAXON_ARCH=path/to/this.json python main.py"
15
+ ]
16
+ },
17
+ "biology": {
18
+ "_doc": "Game-world / bio-inspired dynamics. Independent of neural architecture \u2014 change these to study survival pressure without touching the brain.",
19
+ "metabolic_ramp_per_sec": 11.107312789105478,
20
+ "_doc_metabolic_ramp_per_sec": "Multiplier added to food drain and metabolic_rate per second of idle. With 1s idle \u2192 factor (1 + 10*1) = 11\u00d7. Capped by max_atrophy.",
21
+ "max_atrophy": 5.396242942128863,
22
+ "_doc_max_atrophy": "Hard cap on the atrophy multiplier (v151 fix). 5.0 = max 5\u00d7 normal drain even after extended idle.",
23
+ "metabolic_rate_abs_cap_multiple": 14.466390225084828,
24
+ "_doc_metabolic_rate_abs_cap_multiple": "Absolute ceiling on the per-NxEr metabolic_rate, expressed as a multiple of the initial value (v153 F-1).",
25
+ "start_food_default": 25.0,
26
+ "food_respawn_default": 400,
27
+ "food_sources_default": 50,
28
+ "_doc_food": "Defaults if the user doesn't change them via the menu sliders. The menu still overrides at startup.",
29
+ "mate_cooldown_seconds": 10,
30
+ "circadian_cycle_ticks": 812,
31
+ "idle_explore_seconds": 1.8150915806666064,
32
+ "explore_probability": 0.3969571707186239,
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+ "_doc_idle_explore": "v152 idle-exploration safety net. If an NxEr has been idle \u2265 idle_explore_seconds, with explore_probability per tick, override motor output with a random direction."
34
+ },
35
+ "neural": {
36
+ "_doc": "Network architecture (topology + per-neuron parameters). Change these to test different brain configurations.",
37
+ "num_input_neurons": 10,
38
+ "num_output_neurons": 7,
39
+ "num_hidden_neurons_default": 14,
40
+ "_doc_neuron_counts": "Inputs: 10 sensory channels (movement, encounter, terrain, hunger, sight, smell, daynight, temp, proprio, song). Outputs: 7 motor (MoveX, MoveY, Social, MateIntent, GiveFood, Resting, Sing).",
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+ "connection_probability": 0.29813856580352527,
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+ "afferent_synapse_strength": 1.211286810633645,
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+ "proprioceptive_afferent_gain": 1.8,
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+ "sensory_input_gain": 0.9,
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+ "firing_threshold_excitatory": 0.6038554355080791,
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+ "firing_threshold_inhibitory": -0.55,
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+ "spontaneous_firing_rate": 0.051860806896196036,
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+ "intrinsic_timescale_default": 15.0910748338826,
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+ "resting_potential_decay": 0.16259197560300098,
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+ "sensorimotor_coupling": 0.2739806598929556,
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+ "_doc_sensorimotor_coupling": "v164 \u2014 multiplier on input\u2192output direct-edge probability. 0.0 = pre-v164 (uniform random links). 1.0 = 2x more sensory\u2192motor connections. 3.0 = 4x. The fitness component sensory_motor_corr was stuck near zero in 1425 v163 trials because there was no architectural bias for sensory pathways. Boost this and plasticity will amplify the correlations.",
52
+ "symmetric_stdp": false,
53
+ "_doc_symmetric_stdp": "v169 (v4.77) \u2014 opt-in for MultiNeuraxon2 Bug #3 fix. False (default) preserves v161-v168 asymmetric STDP where state==-1 is invisible to plasticity (only +1-driven correlations strengthen synapses). True enables signed STDP traces + symmetric (-1,-1) \u2192 LTP and (-1,+1) \u2192 LTD branches. Hypothesised to address the input saturation root cause we worked around with sm_corr_peak in v165. NAS will A/B test it.",
54
+ "refractory_period_ticks": 5,
55
+ "_doc_refractory_period_ticks": "v171 (v4.79) \u2014 number of ticks a neuron is FORCED to state=0 after each firing event (0\u2192\u00b11 transition). 0 = no refractory (v161-v170 behaviour). The v170 @2400s membrane diagnostics showed only 0.6% of samples at state=0 \u2014 the network had become a bistable +1/-1 oscillator with no rest band. The paper's trinary firing model REQUIRES a meaningful 0 state. This parameter restores it. NAS searches 0-12 ticks; biologically realistic values are 1-5 (~ 1-5 game ticks at 10Hz). The membrane potential continues to evolve during refractory so the neuron can fire again immediately after the buffer expires.",
56
+ "post_spike_mp_reset": 0.2902948668693539,
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+ "_doc_post_spike_mp_reset": "v172 (v4.80) \u2014 after-hyperpolarization (AHP). Fraction by which membrane_potential is pulled toward 0 after each firing event (0\u2192\u00b11). 0.0 = no reset (v171 behaviour). 1.0 = full reset to mp=0. Combined with refractory_period_ticks, restores the paper's intended trinary dynamics: refractory holds state=0 for N ticks while mp drops back to rest band, then state stays at 0 NATURALLY until inputs push mp past threshold again (rather than immediately re-firing). v171 found refract=1 alone only achieved 0.3% state=0 because mp stayed saturated past threshold; this parameter fixes that by snapping mp back to the rest band. NAS searches 0.0-1.0.",
58
+ "_doc_thresholds": "Membrane firing thresholds (above which trinary_state = +1, below -threshold = -1). The membrane potential is a low-pass filter with intrinsic_timescale ticks. resting_potential_decay multiplies mp by (1-this) each tick before the membrane equation update.",
59
+ "sphere_topology": "chc6",
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+ "cross_sphere_coupling": 1.3091816516118238,
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+ "cryst_capacity": 2.46847169863318,
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+ "free_energy_beta": 0.49659783284986175
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+ },
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+ "operating_ranges": {
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+ "_doc": "Plasticity / adaptation / brake tunables. Change these to test different learning dynamics.",
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+ "learning_rate": 0.04742143502257988,
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+ "plasticity_threshold": 0.6052436016686822,
68
+ "adaptation_tau_ticks": 30.758553639504157,
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+ "adaptation_target_excitatory_multiplier": 1.5,
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+ "adaptation_target_inhibitory_multiplier": 1.0,
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+ "_doc_adaptation": "v149: adapt builds toward 0.55 \u00d7 multiplier when firing. Tau=20 ticks. Excitatory uses 1.5\u00d7 to bias the brake against +1 dominance.",
72
+ "autoreceptor_coefficient": 0.08503814558759454,
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+ "autoreceptor_tau_ticks": 150.0,
74
+ "autoreceptor_rate_coeff": 0.35,
75
+ "_doc_autoreceptor": "Per-neuron autoreceptor that subtracts from theta1_eff (v154 sign back to v152 form \u2014 see CHANGELOG_v154 for context).",
76
+ "sensory_boost_function": "tanh",
77
+ "sensory_boost_scale": 1.0,
78
+ "_doc_sensory_boost": "v152 saturating cap: boosted_external = scale * tanh(scale * external_input). Asymptote = scale. 1.0 keeps strong inputs near threshold; lowering compresses further.",
79
+ "plasticity_brake_threshold": 0.5,
80
+ "plasticity_brake_slope": 1.8,
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+ "plasticity_brake_floor": 0.1,
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+ "_doc_plasticity_brake": "v152: when input_saturation_fraction > brake_threshold, learning_rate_mod is multiplied by max(floor, 1 - slope*(sat-threshold)).",
83
+ "fitness_g_weight": 0.8995047329111996
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+ },
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+ "genetic_lottery": {
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+ "_doc": "v162 \u2014 per-NxEr trait variation at birth. Each NxEr samples its own value from these ranges, creating the genetic diversity that selection acts on (the missing ingredient that kept M10 heritability at 0 across all 743 v161 NAS trials). Inheritance + mutation at mating carries traits across generations.",
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+ "metabolic_rate_multiplier_range": [
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+ 0.6665275710758036,
89
+ 1.0744125935422772
90
+ ],
91
+ "_doc_metabolic_rate_multiplier_range": "At birth each NxEr samples a multiplier uniformly from this range and applies it to its base metabolic_rate. [0.85, 1.15] means \u00b115% variation. Wider = more diversity but also more individuals at survival extremes.",
92
+ "intrinsic_timescale_jitter": 2.7836884503572037,
93
+ "_doc_intrinsic_timescale_jitter": "At birth each NxEr adds a uniform random value in [-jitter, +jitter] to intrinsic_timescale_default. 0.0 = no per-NxEr variation (all neurons in all NxErs have same timescale).",
94
+ "firing_threshold_jitter": 0.0499962590497638,
95
+ "_doc_firing_threshold_jitter": "Same idea for firing_threshold_excitatory / inhibitory. 0.04 = \u00b10.04 around the architecture default of 0.55. 0.0 = no per-NxEr variation.",
96
+ "mutation_strength": 0.10711735623775412,
97
+ "_doc_mutation_strength": "When offspring inherit a genetic trait from a parent, the value is perturbed by \u00b1mutation_strength \u00d7 (parent_value). 0.05 = 5% perturbation. 0 = exact copy."
98
+ },
99
+ "healthy_bands": {
100
+ "_doc": "Target ranges shown on the dashboard. NxErs operating in these bands are coloured green.",
101
+ "M1_excitatory_fraction": [
102
+ 0.18,
103
+ 0.28
104
+ ],
105
+ "M2_mean_gate": [
106
+ 0.4,
107
+ 0.85
108
+ ],
109
+ "M3_pac_modulation_idx": [
110
+ 0.005,
111
+ 0.1
112
+ ],
113
+ "M5_branching_ratio": [
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+ 0.92,
115
+ 1.1
116
+ ],
117
+ "M6_spontaneous_fraction": [
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+ 0.1,
119
+ 0.45
120
+ ],
121
+ "M7_zero_input_mi_ratio": [
122
+ 0.4,
123
+ 1.2
124
+ ],
125
+ "M9_transfer_ratio": [
126
+ 0.85,
127
+ 1.3
128
+ ],
129
+ "M10_heritability_r": [
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+ 0.2,
131
+ 1.0
132
+ ],
133
+ "sensory_motor_corr": [
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+ 0.2,
135
+ 1.0
136
+ ],
137
+ "pop_mean_idle_seconds": [
138
+ 0.0,
139
+ 1.5
140
+ ],
141
+ "input_saturation_fraction": [
142
+ 0.0,
143
+ 0.3
144
+ ],
145
+ "input_locked_fraction": [
146
+ 0.0,
147
+ 0.2
148
+ ],
149
+ "exploration_trigger_rate": [
150
+ 0.01,
151
+ 0.4
152
+ ]
153
+ }
154
+ }
20260525_081253/nas_top3.json ADDED
@@ -0,0 +1,154 @@
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1
+ {
2
+ "_meta": {
3
+ "name": "nas_best_t028",
4
+ "version": "NxonArchNAS v0.6 (v187)",
5
+ "description": "Architecture found by NAS \u2014 trial 28, fitness 5.4633. Plug-and-play compatible with architectures/default.json: drop this file into architectures/ or load with NEURAXON_ARCH=path/to/this.json python main.py",
6
+ "source": "NxonArchNAS",
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+ "rank": 3,
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+ "trial_id": 28,
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+ "fitness": 5.463337067990651,
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+ "saved_at": "2026-05-26T08:41:59",
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+ "notes": [
12
+ "Sections inherited from default.json: healthy_bands (unchanged target ranges)",
13
+ "Sections overridden by NAS: biology, neural, operating_ranges, genetic_lottery",
14
+ "Load with NEURAXON_ARCH=path/to/this.json python main.py"
15
+ ]
16
+ },
17
+ "biology": {
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+ "_doc": "Game-world / bio-inspired dynamics. Independent of neural architecture \u2014 change these to study survival pressure without touching the brain.",
19
+ "metabolic_ramp_per_sec": 6.693884415443341,
20
+ "_doc_metabolic_ramp_per_sec": "Multiplier added to food drain and metabolic_rate per second of idle. With 1s idle \u2192 factor (1 + 10*1) = 11\u00d7. Capped by max_atrophy.",
21
+ "max_atrophy": 6.56035471196675,
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+ "_doc_max_atrophy": "Hard cap on the atrophy multiplier (v151 fix). 5.0 = max 5\u00d7 normal drain even after extended idle.",
23
+ "metabolic_rate_abs_cap_multiple": 15.569629376368718,
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+ "_doc_metabolic_rate_abs_cap_multiple": "Absolute ceiling on the per-NxEr metabolic_rate, expressed as a multiple of the initial value (v153 F-1).",
25
+ "start_food_default": 25.0,
26
+ "food_respawn_default": 400,
27
+ "food_sources_default": 50,
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+ "_doc_food": "Defaults if the user doesn't change them via the menu sliders. The menu still overrides at startup.",
29
+ "mate_cooldown_seconds": 18,
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+ "circadian_cycle_ticks": 484,
31
+ "idle_explore_seconds": 1.4685658999272722,
32
+ "explore_probability": 0.5395568371495622,
33
+ "_doc_idle_explore": "v152 idle-exploration safety net. If an NxEr has been idle \u2265 idle_explore_seconds, with explore_probability per tick, override motor output with a random direction."
34
+ },
35
+ "neural": {
36
+ "_doc": "Network architecture (topology + per-neuron parameters). Change these to test different brain configurations.",
37
+ "num_input_neurons": 10,
38
+ "num_output_neurons": 7,
39
+ "num_hidden_neurons_default": 11,
40
+ "_doc_neuron_counts": "Inputs: 10 sensory channels (movement, encounter, terrain, hunger, sight, smell, daynight, temp, proprio, song). Outputs: 7 motor (MoveX, MoveY, Social, MateIntent, GiveFood, Resting, Sing).",
41
+ "connection_probability": 0.20252080651887136,
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+ "afferent_synapse_strength": 1.3313901442662441,
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+ "proprioceptive_afferent_gain": 1.8,
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+ "sensory_input_gain": 0.9,
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+ "firing_threshold_excitatory": 0.5147632895850621,
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+ "firing_threshold_inhibitory": -0.55,
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+ "spontaneous_firing_rate": 0.03323119836998352,
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+ "intrinsic_timescale_default": 18.948679552094923,
49
+ "resting_potential_decay": 0.24578928266301323,
50
+ "sensorimotor_coupling": 0.6965653328854569,
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+ "_doc_sensorimotor_coupling": "v164 \u2014 multiplier on input\u2192output direct-edge probability. 0.0 = pre-v164 (uniform random links). 1.0 = 2x more sensory\u2192motor connections. 3.0 = 4x. The fitness component sensory_motor_corr was stuck near zero in 1425 v163 trials because there was no architectural bias for sensory pathways. Boost this and plasticity will amplify the correlations.",
52
+ "symmetric_stdp": true,
53
+ "_doc_symmetric_stdp": "v169 (v4.77) \u2014 opt-in for MultiNeuraxon2 Bug #3 fix. False (default) preserves v161-v168 asymmetric STDP where state==-1 is invisible to plasticity (only +1-driven correlations strengthen synapses). True enables signed STDP traces + symmetric (-1,-1) \u2192 LTP and (-1,+1) \u2192 LTD branches. Hypothesised to address the input saturation root cause we worked around with sm_corr_peak in v165. NAS will A/B test it.",
54
+ "refractory_period_ticks": 3,
55
+ "_doc_refractory_period_ticks": "v171 (v4.79) \u2014 number of ticks a neuron is FORCED to state=0 after each firing event (0\u2192\u00b11 transition). 0 = no refractory (v161-v170 behaviour). The v170 @2400s membrane diagnostics showed only 0.6% of samples at state=0 \u2014 the network had become a bistable +1/-1 oscillator with no rest band. The paper's trinary firing model REQUIRES a meaningful 0 state. This parameter restores it. NAS searches 0-12 ticks; biologically realistic values are 1-5 (~ 1-5 game ticks at 10Hz). The membrane potential continues to evolve during refractory so the neuron can fire again immediately after the buffer expires.",
56
+ "post_spike_mp_reset": 0.12766335407957702,
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+ "_doc_post_spike_mp_reset": "v172 (v4.80) \u2014 after-hyperpolarization (AHP). Fraction by which membrane_potential is pulled toward 0 after each firing event (0\u2192\u00b11). 0.0 = no reset (v171 behaviour). 1.0 = full reset to mp=0. Combined with refractory_period_ticks, restores the paper's intended trinary dynamics: refractory holds state=0 for N ticks while mp drops back to rest band, then state stays at 0 NATURALLY until inputs push mp past threshold again (rather than immediately re-firing). v171 found refract=1 alone only achieved 0.3% state=0 because mp stayed saturated past threshold; this parameter fixes that by snapping mp back to the rest band. NAS searches 0.0-1.0.",
58
+ "_doc_thresholds": "Membrane firing thresholds (above which trinary_state = +1, below -threshold = -1). The membrane potential is a low-pass filter with intrinsic_timescale ticks. resting_potential_decay multiplies mp by (1-this) each tick before the membrane equation update.",
59
+ "sphere_topology": "sensory_association_motor",
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+ "cross_sphere_coupling": 0.22158570084861895,
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+ "cryst_capacity": 2.390471269869292,
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+ "free_energy_beta": 1.9790078818714014
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+ },
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+ "operating_ranges": {
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+ "_doc": "Plasticity / adaptation / brake tunables. Change these to test different learning dynamics.",
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+ "learning_rate": 0.002061422638141496,
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+ "plasticity_threshold": 0.6218532307900585,
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+ "adaptation_tau_ticks": 37.10443542796318,
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+ "adaptation_target_excitatory_multiplier": 1.5,
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+ "adaptation_target_inhibitory_multiplier": 1.0,
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+ "_doc_adaptation": "v149: adapt builds toward 0.55 \u00d7 multiplier when firing. Tau=20 ticks. Excitatory uses 1.5\u00d7 to bias the brake against +1 dominance.",
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+ "autoreceptor_coefficient": 0.23024188471977663,
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+ "autoreceptor_tau_ticks": 150.0,
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+ "autoreceptor_rate_coeff": 0.35,
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+ "_doc_autoreceptor": "Per-neuron autoreceptor that subtracts from theta1_eff (v154 sign back to v152 form \u2014 see CHANGELOG_v154 for context).",
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+ "sensory_boost_function": "tanh",
77
+ "sensory_boost_scale": 1.0,
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+ "_doc_sensory_boost": "v152 saturating cap: boosted_external = scale * tanh(scale * external_input). Asymptote = scale. 1.0 keeps strong inputs near threshold; lowering compresses further.",
79
+ "plasticity_brake_threshold": 0.5,
80
+ "plasticity_brake_slope": 1.8,
81
+ "plasticity_brake_floor": 0.1,
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+ "_doc_plasticity_brake": "v152: when input_saturation_fraction > brake_threshold, learning_rate_mod is multiplied by max(floor, 1 - slope*(sat-threshold)).",
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+ "fitness_g_weight": 0.2991542491237722
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+ },
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+ "genetic_lottery": {
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+ "_doc": "v162 \u2014 per-NxEr trait variation at birth. Each NxEr samples its own value from these ranges, creating the genetic diversity that selection acts on (the missing ingredient that kept M10 heritability at 0 across all 743 v161 NAS trials). Inheritance + mutation at mating carries traits across generations.",
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+ "metabolic_rate_multiplier_range": [
88
+ 0.9367101754882046,
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+ 1.4296724318530711
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+ ],
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+ "_doc_metabolic_rate_multiplier_range": "At birth each NxEr samples a multiplier uniformly from this range and applies it to its base metabolic_rate. [0.85, 1.15] means \u00b115% variation. Wider = more diversity but also more individuals at survival extremes.",
92
+ "intrinsic_timescale_jitter": 3.654686501342292,
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+ "_doc_intrinsic_timescale_jitter": "At birth each NxEr adds a uniform random value in [-jitter, +jitter] to intrinsic_timescale_default. 0.0 = no per-NxEr variation (all neurons in all NxErs have same timescale).",
94
+ "firing_threshold_jitter": 0.045318250580747045,
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+ "_doc_firing_threshold_jitter": "Same idea for firing_threshold_excitatory / inhibitory. 0.04 = \u00b10.04 around the architecture default of 0.55. 0.0 = no per-NxEr variation.",
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+ "mutation_strength": 0.14991856351502328,
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+ "_doc_mutation_strength": "When offspring inherit a genetic trait from a parent, the value is perturbed by \u00b1mutation_strength \u00d7 (parent_value). 0.05 = 5% perturbation. 0 = exact copy."
98
+ },
99
+ "healthy_bands": {
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+ "_doc": "Target ranges shown on the dashboard. NxErs operating in these bands are coloured green.",
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+ "M1_excitatory_fraction": [
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+ 0.18,
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+ 0.28
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+ ],
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+ "M2_mean_gate": [
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+ 0.4,
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+ 0.85
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+ ],
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+ "M3_pac_modulation_idx": [
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+ 0.005,
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+ 0.1
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+ ],
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+ "M5_branching_ratio": [
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+ 0.92,
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+ 1.1
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+ ],
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+ "M6_spontaneous_fraction": [
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+ 0.1,
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+ 0.45
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+ ],
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+ "M7_zero_input_mi_ratio": [
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+ 0.4,
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+ 1.2
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+ ],
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+ "M9_transfer_ratio": [
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+ 0.85,
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+ 1.3
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+ ],
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+ "M10_heritability_r": [
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+ 0.2,
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+ 1.0
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+ ],
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+ "sensory_motor_corr": [
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+ 0.2,
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+ 1.0
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+ ],
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+ "pop_mean_idle_seconds": [
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+ 0.0,
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+ 1.5
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+ ],
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+ "input_saturation_fraction": [
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+ 0.0,
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+ 0.3
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+ ],
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+ "input_locked_fraction": [
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+ 0.2
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+ ],
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+ "exploration_trigger_rate": [
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+ 0.01,
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+ 0.4
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+ ]
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+ }
154
+ }
20260525_081253/trial_000/2814893252_nxon2_430391171_1_Completed_2026-05-25T13-47-05Z.json ADDED
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20260525_081253/trial_000/nxon2_430391171__BestFitness.json ADDED
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20260525_081253/trial_000/nxon2_430391171__BestFoodFound.json ADDED
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20260525_081253/trial_000/nxon2_430391171__BestFoodTaken.json ADDED
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20260525_081253/trial_000/nxon2_430391171__BestMates.json ADDED
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20260525_081253/trial_000/nxon2_430391171__BestTimeLived.json ADDED
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20260525_081253/trial_000/nxon2_430391171__BestWorldExplorer.json ADDED
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20260525_081253/trial_000/nxon2_430391171__KeyMetrics.txt ADDED
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+ version https://git-lfs.github.com/spec/v1
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+ # Neuraxon Game of Life v5.02 — Per-NxEr lifespan log
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+ # game_id=nxon2_430391171
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+ # deaths=47 survivors_listed=0
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+ # founders_at_start=30
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+ # founders_still_alive_at_export=1
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+ # format: tab-separated, header row. status=DIED|ALIVE; ALIVE rows have death_tick=-1 and age_ticks = ticks lived so far.
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+ nxer_id birth_tick death_tick age_ticks was_original status
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20260525_081253/trial_000__arch.json ADDED
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+ "sampled_at": "2026-05-25T08:12:53"
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+ "refractory_period_ticks": 1,
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+ "sphere_topology": "chc6",
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+ "cross_sphere_coupling": 1.0207515495539756,
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20260525_081253/trial_001/nxon2_024722855__BestFoodFound.json ADDED
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20260525_081253/trial_001/nxon2_024722855__BestFoodTaken.json ADDED
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20260525_081253/trial_001/nxon2_024722855__BestMates.json ADDED
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20260525_081253/trial_001/nxon2_024722855__BestTimeLived.json ADDED
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20260525_081253/trial_001/nxon2_024722855__BestWorldExplorer.json ADDED
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20260525_081253/trial_001/nxon2_024722855__KeyMetrics.txt ADDED
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20260525_081253/trial_001/nxon2_024722855__LifespanLog.txt ADDED
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1
+ # Neuraxon Game of Life v5.02 — Per-NxEr lifespan log
2
+ # game_id=nxon2_024722855
3
+ # deaths=52 survivors_listed=0
4
+ # founders_at_start=30
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+ # founders_still_alive_at_export=1
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+ # format: tab-separated, header row. status=DIED|ALIVE; ALIVE rows have death_tick=-1 and age_ticks = ticks lived so far.
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+ nxer_id birth_tick death_tick age_ticks was_original status
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