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7.5.3.2 Minimum requirements
For the parameters specified in table 7.5.3.1 the downlink averaged over one timeslot power shall be below the specified value in table 7.5.3.2 more than 90% of the time. BLER shall be as shown in table 7.5.3.2. Downlink power control is ON during the test. Table 7.5.3.1: Test parameters for downlink power control – co...
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7.5.3.3 Test purpose
To verify that the UE receiver is capable of converging to the required link quality set by the network while using as low power as possible.
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7.5.3.4 Method of test
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7.5.3.4.1 Initial conditions
Test environment: normal; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. 1) Connect SS, multipath fading simulator and an AWGN source to the UE antenna connector as shown in figure A.10. 2) Set up a call according to the Generic call setup procedure. 3) RF parameters are set up acco...
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7.5.3.4.2 Procedure
1) After the target quality on DTCH is met, BLER is measured. Simultaneously the downlink power ratio averaged over one slot is measured. This is repeated until adequate amount of measurements is done to reach the required confidence level. 2) The measured quality on DTCH (BLER) and the measured downlink power ratio v...
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7.5.3.5 Test Requirements
a) The measured quality on DTCH does not exceed the values in table 7.5.3.2. b) The downlink power ratio values, which are averaged over one slot, shall be below the values in table 7.5.3.2. 7.5.3A Power control in downlink for 1,28 Mcps TDD option, constant BLER Target(Release 7 and later) 7.5.3A.1 Definition and app...
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7.5.4 Power control in the downlink for 1,28 Mcps TDD option, wind up effects
7.5.4.1 Definition and applicability This requirement verifies that, after the downlink maximum power is limited in the UTRAN and it has been released again, the downlink power control in the UE does not have a wind up effect, i.e. the required DL power has increased during time period the DL power was limited. The re...
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7.5.4.2 Minimum requirements
This test is run in three stages where stage 1 is for convergence of the power control loop. In stage two the maximum downlink power for the dedicated channel is limited not to be higher than the parameter specified in table 7.5.4.1. All parameters used in the three stages are specified in table 7.5.4.1. The downlink I...
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7.5.4.3 Test purpose
To verify that the UE downlink power control does not require too high downlink power during a period after the downlink power is limited by the UTRAN.
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7.5.4.4 Method of test
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7.5.4.4.1 Initial conditions
Test environment: normal; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. 1) Connect SS, multipath fading simulator and an AWGN source to the UE antenna connector as shown in figure A.10. 2) Set up a call according to the Generic call setup procedure. 3) Enter the UE into loopback te...
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7.5.4.4.2 Procedure
1) RF parameters are set up according to table 7.5.4.1. Stage 1 is used for the power control to converge and During Stage 2 the maximum downlink power is limited by UTRAN. 2) SS will vary the physical channel power in downlink according to the TPC commands from UE during stages 1, 2, and 3. 3) Measure Ior/Ioc power ra...
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7.5.4.5 Test Requirements
The downlink Ior/Ioc power ratio values, which are averaged over one timeslot during stage 3, shall be lower than the level specified in table 7.5.4.2 during stage 3 more than 90 % of the time.
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7.5.5 Power control in the downlink for 1,28 Mcps TDD option, initial convergence
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7.5.5.1 Definition and applicability
This requirement verifies that DL power control works properly during the first seconds after DPCH connection is established. The requirements and this test apply to all types of 1.28 Mcps TDD UE of Release 7 and later.
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7.5.5.2 Minimum requirements
For the parameters specified in table 7.5.5.1 the downlink DPCH_ power ratio measured values, which are averaged over 50 ms, shall be within the range specified in table 7.5.5.2 more than 90 % of the time. T1 equals to 5 s and it starts 100 ms after the uplink DPCH physical channel is considered established. T2 equals ...
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7.5.5.3 Test purpose
To verify that DL power control works properly during the first seconds after DPCH connection is established.
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7.5.5.4 Method of test
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7.5.5.4.1 Initial conditions
Test environment: normal; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. 1) Connect SS and an AWGN source to the UE antenna connector as shown in figure A.9.
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7.5.5.4.2 Procedure
1) Enter the UE into loopback test mode according to the Generic call setup procedure. System simulator shall activate power control at the activation time of the Radio Bearer Setup message (At RRC connection setup only DCCH is established). The uplink DPCH physical channel is considered established at the activation t...
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7.5.5.5 Test Requirements
a) The downlink power ratio values shall be within the range specified in table 7.5.5.2 during T1 more than 90 % of the time. b) The downlink power ratio values shall be within the range specified in table 7.5.5.2 during T2 more than 90 % of the time.
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7.6 Uplink Power Control
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7.6.1 Definition and applicability
Power control in the uplink is the ability of the UE to converge to the required link quality set by the network while using minimum uplink power. The requirements of this test shall apply to all types of the UTRA-TDD UE.
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7.6.2 Minimum requirements
During period T1, the PCCPCH and a second Beacon Channel are transmitted in the DL in designated slots within each frame and at the same power level. The UE transmits, using the channel of TS25.105, Annex A.2.1 UL reference measurement channel (12.2 kbps) in one UL slot. For different parts of the test, different UL sl...
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7.6.3 Test purpose
To verify the ability of the UE to converge to the required link quality set by the network while using minimum uplink power.
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7.6.4 Method of test
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7.6.4.1 Initial conditions
Test environment: normal; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. 1) Connect SS and an AWGN source to the UE antenna connector as shown in figure A.9. 2) Set up a call according to the Generic call setup procedure using SS levels and signalling values as specified in table 7....
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7.6.4.2 Procedure
1) The SS adjusts the DPCH constant value until the UE transmit power is 5 dBm. 2) After the UE output power has been held constant at 5 dBm for at least 5 seconds, the received PCCPCH power shall be decreased by 10 dB to -70 dBm as shown in figure 7.6.1. 3) Measure the transmit power according to annex B for the first...
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7.6.5 Test Requirements
The measured transmit power shall not exceed the prescribed tolerance in tables 7.6.5 and 7.6.6. Table 7.6.5: Required UE Output Power, Frame Containing Power Level Change Parameter Units Value UL transmission slot position 1,9 7,14 UE output power dBm 15 ±5.5 5 ±0.5 Table 7.6.6: Required UE Output Power, 20 Frames aft...
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7.7 Demodulation of DCH in moving conditions
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7.7.1 Definition and applicability
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7.7.1.1 3,84 Mcps TDD Option
<void>
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7.7.1.2 1,28 Mcps TDD Option
The receive characteristics of the Dedicated Channel (DCH) in dynamic moving propagation conditions are determined by the Block Error Ratio (BLER) values. BLER is measured for the each of the individual data rate specified for the DPCH. DCH is mapped into in Dedicated Physical Channel (DPCH). The requirements and this ...
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7.7.1.3 7,68 Mcps TDD Option
<void>
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7.7.2 Minimum requirements
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7.7.2.1 3.84 Mcps TDD Option
Void
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7.7.2.2 1.28 Mcps TDD Option
For the parameters specified in Table7.7.1 the BLER should not exceed the piece-wise linear BLER curve specified in Table 7.7.2. Table 7.7.1: DCH parameters in moving propagation conditions (1.28 Mcps TDD Option) Parameters Unit Test 1 Test 2 Number of DPCHo 8 2 Scrambling code and basic midamble code number* 0 0 DPCH ...
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7.7.2.3 7.68 Mcps TDD Option
void
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7.7.3 Test purpose
To verify the ability of the receiver to receive a predefined test signal, representing a moving propagation channel for the wanted and for the co-channel signals from serving and adjacent cells, with a BLER not exceeding a specified value.
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7.7.4 Method of test
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7.7.4.1 Initial conditions
Test environment: normal; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. 1. Connect the SS and an AWGN noise source to the UE antenna connector as shown in figure A.10. In case of UE-receive diversity connect according to figure A.17. 2. Set up a call according to the Generic call s...
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7.7.4.2 Procedure
1. Measure BLER of DCH.
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7.7.5 Test Requirements
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7.7.5.1 3.84 Mcps option
Void.
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7.7.5.2 1.28 Mcps option
For the parameters specified in table 7.7.3 the average downlink power ratio shall be below the specified value for the BLER shown in table 7.7.4. Table 7.7.3: DCH parameters in moving propagation conditions Parameters Unit Test 1 Test 2 Number of DPCHo 8 2 Scrambling code and basic midamble code number* 0 0 DPCH Chan...
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7.7.5.3 7.68Mcps option
Void.
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7.8 Demodulation of DCH in birth-death conditions
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7.8.1 Definition and applicability
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7.8.1.1 3,84 Mcps TDD Option
<void>
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7.8.1.2 1,28 Mcps TDD Option
The receive characteristics of the Dedicated Channel (DCH) in birth-death propagation conditions are determined by the Block Error Ratio (BLER) values. BLER is measured for the each of the individual data rate specified for the DPCH. DCH is mapped into in Dedicated Physical Channel (DPCH). The requirements and this tes...
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7.8.1.3 7,68 Mcps TDD Option
<void>
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7.8.2 Minimum requirements
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7.8.2.1 3.84 Mcps TDD Option
Void
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7.8.2.2 1.28 Mcps TDD Option
For the parameters specified in Table7.8.1 the BLER should not exceed the piece-wise linear BLER curve specified in Table 7.8.2. Table 7.8.1: DCH parameters in birth-death propagation conditions (1.28 Mcps TDD Option) Parameters Unit Test 1 Test 2 Number of DPCHo 8 2 Scrambling code and basic midamble code number* 0 0 ...
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7.8.2.3 7.68 Mcps TDD Option
void
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7.8.3 Test purpose
To verify the ability of the receiver to receive a predefined test signal, representing a moving propagation channel for the wanted and for the co-channel signals from serving and adjacent cells, with a BLER not exceeding a specified value.
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7.8.4 Method of test
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7.8.4.1 Initial conditions
Test environment: normal; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. 1. Connect the SS and an AWGN noise source to the UE antenna connector as shown in figure A.10. In case of UE-receive diversity connect according to figure A.17. 2. Set up a call according to the Generic call s...
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7.8.4.2 Procedure
1. Measure BLER of DCH.
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7.8.5 Test Requirements
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7.8.5.1 3.84 Mcps option
Void.
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7.8.5.2 1.28 Mcps option
For the parameters specified in table 7.8.3 the average downlink power ratio shall be below the specified value for the BLER shown in table 7.8.4. Table 7.8.3: DCH parameters in birth-death propagation conditions Parameters Unit Test 1 Test 2 Number of DPCHo 8 2 Scrambling code and basic midamble code number* 0 0 DPCH ...
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7.8.5.3 7.68 Mcps option
Void. 8 Requirements for Support of RRM
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8.1 General
Void.
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8.2 Idle Mode Tasks
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8.2.1 RF Cell Selection Scenario
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8.2.1.1 Introduction
After a UE has switched on and a PLMN has been selected, the Cell selection process takes place, as described in TS 25.304. This process allows the UE to select a suitable cell where to camp on in order to access available services. In this process the UE can use stored information (Stored information cell selection) o...
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8.2.2 Cell Re-Selection
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8.2.2.1 Scenario 1: Cell re-selection to intra frequency TDD cell
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8.2.2.1.1 Definition and applicability
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8.2.2.1.1.1 3,84 Mcps TDD Option
The cell re-selection delay is defined as the time from a change of cell levels to the moment when this change causes the UE to camp on a new cell , and starts to send the RRC CONNECTION REQUEST message to perform a Location Registration on the new cell. The requirements and this test apply to the 3,84 Mcps TDD UE.
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8.2.2.1.1.2 1,28 Mcps TDD Option
The cell re-selection delay is defined as the time from the beginning of time period T2, to the moment when the UE camps on Cell 2, and starts to send SYNCH-UL sequence in the UpPTS for sending the RRC CONNECTION REQUEST to perform a Location Registration on cell 2. This test is applicable to 1,28 Mcps TDD UE.
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8.2.2.1.1.3 7,68 Mcps TDD Option
The cell re-selection delay is defined as the time from a change of cell levels to the moment when this change causes the UE to camp on a new cell , and starts to send the RRC CONNECTION REQUEST message to perform a Location Registration on the new cell. The requirements and this test apply to the 7,68 Mcps TDD UE.
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8.2.2.1.2 Minimum requirement
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8.2.2.1.2.1 3,84 Mcps TDD Option
The cell re-selection delay shall be less than 8 s when the DRX cycle length is 1,28 s. The rate of correct cell reselections observed during repeated tests shall be at least 90% with a confidence level of [FFS]%. NOTE: The cell re-selection delay can be expressed as: TevaluateTDD + TSI, where: TevaluateTDD A DRX cycle...
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8.2.2.1.2.2 1,28 Mcps TDD Option
The cell re-selection delay shall be less than 8 s when the DRX cycle length is 1,28 s. The rate of correct cell reselections observed during repeated tests shall be at least 90% with a confidence level of 95%. NOTE: The cell re-selection delay can be expressed as: TevaluateNTDD + TSI, where: TevaluateNTDD: A DRX cycl...
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8.2.2.1.2.3 7,68 Mcps TDD Option
The cell re-selection delay shall be less than 8 s when the DRX cycle length is 1,28 s. The rate of correct cell reselections observed during repeated tests shall be at least 90% with a confidence level of 95%. NOTE: The cell re-selection delay can be expressed as: TevaluateTDD + TSI, where: TevaluateTDD A DRX cycle le...
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8.2.2.1.3 Test purpose
This test is to verify the requirement for the cell re-selection delay in the single carrier case
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8.2.2.1.4 Method of test
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8.2.2.1.4.1 3,84 Mcps TDD Option
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8.2.2.1.4.1.1 Initial conditions
This scenario implies the presence of 1 carrier and 6 cells as given in table 8.2.2.1.1 and table 8.2.2.1.2. Cell 1 and cell 2 shall belong to different Location Areas. Table 8.2.2.1.1: General test parameters for Cell Re-selection to intra-frequency TDD cell Parameter Unit Value Comment Initial condition Active cell C...
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8.2.2.1.4.1.2 Procedure
a) The SS activates cell 1-6 with T1 defined parameters and monitors cell 1 and 2 for RRC CONNECTION REQUEST messages from the UE. b) The UE is switched on. c) The SS waits until the UE camps on Cell 1 and sends the RRC CONNECTION REQUEST message. d) After 15 s, the parameters are changed as described for T2. e) The SS...
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8.2.2.1.4.2 1,28 Mcps TDD Option
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8.2.2.1.4.2.1 Initial conditions
This scenario implies the presence of 1 carrier and 6 cells as given in table 8.2.2.1.1A and 8.2.2.1.2A. Table 8.2.2.1.1A: General test parameters for Cell Re-selection to intra-frequency TDD cell Parameter Unit Value Comment Initial condition Active cell Cell1 Neighbour cells Cell2, Cell3,Cell4, Cell5, Cell6 Final con...
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8.2.2.1.4.2.2 Procedure
a) The SS activates cell 1-6 with T1 defined parameters and monitors cell 1 and 2 for SYNCH-UL sequence in the UpPTS for sending for RRC CONNECTION REQUEST messages from the UE. b) The UE is switched on. c) The SS waits until the UE camps on Cell 1 and sends the RRC CONNECTION REQUEST message. d) After 15 s, the parame...
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8.2.2.1.4.3 7,68 Mcps TDD Option
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8.2.2.1.4.3.1 Initial conditions
This scenario implies the presence of 1 carrier and 6 cells as given in table 8.2.2.1.1B and table 8.2.2.1.2B. Cell 1 and cell 2 shall belong to different Location Areas. Table 8.2.2.1.1B: General test parameters for Cell Re-selection to intra-frequency TDD cell Parameter Unit Value Comment Initial condition Active cel...
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8.2.2.1.4.3.2 Procedure
a) The SS activates cell 1-6 with T1 defined parameters and monitors cell 1 and 2 for RRC CONNECTION REQUEST messages from the UE. b) The UE is switched on. c) The SS waits until the UE camps on Cell 1 and sends the RRC CONNECTION REQUEST message. d) After 15 s, the parameters are changed as described for T2. e) The SS...
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8.2.2.1.5 Test Requirements
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8.2.2.1.5.1 3,84 Mcps TDD Option
1) In step c), after the UE has responded on cell 1, it shall not respond on any other cell (cell selection). 2) In step e), the UE shall respond on cell 2 within 8 s. 3) In step g), the UE shall respond on cell 1 within 8 s. For the test to pass, the total number of fulfilled test requirements 2) and 3) shall be more ...
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8.2.2.1.5.2 1,28 Mcps TDD Option
1) In step c), after the UE has responded on cell 1, it shall not respond on any other cell (cell selection). 2) In step e), the UE shall respond on cell 2 within 8 s. 3) In step g), the UE shall respond on cell 1 within 8 s. For the test to pass, the total number of successful tests shall be more than 90% with a confi...
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8.2.2.1.5.3 7,68 Mcps TDD Option
1) In step c), after the UE has responded on cell 1, it shall not respond on any other cell (cell selection). 2) In step e), the UE shall respond on cell 2 within 8 s. 3) In step g), the UE shall respond on cell 1 within 8 s. For the test to pass, the total number of fulfilled test requirements 2) and 3) shall be more ...
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8.2.2.2 Scenario 2: Cell re-selection to inter-frequency TDD cell
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8.2.2.2.1 Definition and applicability
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8.2.2.2.1.1 3,84 Mcps Option
The cell re-selection delay is defined as the time from a change of cell levels to the moment when this change causes the UE to camp on a new cell , and starts to send the RRC CONNECTION REQUEST message to perform a Location Registration on the new cell. The requirements and this test apply to the 3,84 Mcps TDD UE.
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8.2.2.2.1.2 1,28 Mcps Option
The cell re-selection delay is defined as the time from the beginning of time period T2, to the moment when the UE camps on Cell 2, and starts to send the SYNCH-UL sequence in the UpPTS for sending the RRC CONNECTION REQUEST to perform a Location Registration on cell 2. This test is applicable to 1,28 Mcps TDD UE.
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8.2.2.2.1.3 7,68 Mcps Option
The cell re-selection delay is defined as the time from a change of cell levels to the moment when this change causes the UE to camp on a new cell, and starts to send the RRC CONNECTION REQUEST message to perform a Location Registration on the new cell. The requirements and this test apply to the 7,68 Mcps TDD UE.
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8.2.2.2.2 Minimum requirement
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8.2.2.2.2.1 3,84 Mcps Option
The cell re-selection delay shall be less than 8 s. The rate of correct cell reselections observed during repeated tests shall be at least 90% with a confidence level of [FFS]%. The rate of correct cell reselections observed during repeated tests shall be at least 90%.NOTE: The cell re-selection delay can be expressed ...
40bd05ebf1e9d686c3dc55dd3e817398
34.122
8.2.2.2.2.2 1,28 Mcps Option
The cell re-selection delay shall be less than 8 s. The rate of correct cell reselections observed during repeated tests shall be at least 90% with a confidence level of 95%. NOTE: The cell re-selection delay can be expressed as: TevaluateNTDD + TSI, where: TevaluateNTDD A DRX cycle length of 1280ms is assumed for thi...