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8.6.5.2.1.2 1,28 Mcps TDD Option
The purpose of this test is to verify that the UE makes correct reporting of an event when measuring on E-UTRA TDD cells. This test will partly verify the E-UTRA TDD cell search requirements in TS 25.123 [2] section 8.1A.2.7 under fading propagation conditions. The requirements and this test apply to release 9 and lat...
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8.6.5.2.1.3 7,68 Mcps TDD Option
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8.6.5.2.2 Minimum requirement
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8.6.5.2.2.1 3,84 Mcps TDD Option
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8.6.5.2.2.2 1,28 Mcps TDD Option
The requirements in this section apply only to UEs supporting 1.28Mcps TDD and E-UTRAN TDD. 1) For a UE requiring idle intervals to perform E-UTRAN TDD measurements: - a minimum idle interval of 6ms shall be scheduled by the network. - when signalled by UTRAN, the UE shall continuously measure previously detected E-UTR...
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8.6.5.2.2.3 7,68 Mcps TDD Option
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8.6.5.2.3 Test purpose
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8.6.5.2.3.1 3,84 Mcps TDD Option
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8.6.5.2.3.2 1,28 Mcps TDD Option
To verify that the UE makes correct reporting of an event when measuring on E-UTRA TDD cells.
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8.6.5.2.3.3 7,68 Mcps TDD Option
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8.6.5.2.4 Method of test
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8.6.5.2.4.1 3,84 Mcps TDD Option
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8.6.5.2.4.2 1,28 Mcps TDD Option
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8.6.5.2.4.2.1 Initial conditions
Test environment : normal; see clauses G.2.1 and G.2.2. Frequencies to be tested : see table J.2 in Annex J. This test scenario comprised of Cell 1 UTRA TDD serving cell, and Cell 2 E-UTRA TDD cell to be searched. Test parameters are given in Table A.8.5.2.1.2-1, A.8.5.2.1.2-2, and A.8.5.2.1.2-3. Idle interval of 80ms ...
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8.6.5.2.4.3 7,68 Mcps TDD Option
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8.6.5.2.5 Test requirements
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8.6.5.2.5.1 3,84 Mcps TDD Option
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8.6.5.2.5.2 1,28 Mcps TDD Option
Table 8.6.5.2.5.2-1: Cell specific test parameters for cell search UTRA TDD to E-UTRA TDD test case (cell 1) Parameter Unit Cell 1 (UTRA) Timeslot Number 0 DwPTS T1 T2 T1 T2 UTRA RF Channel Number* Channel 1 PCCPCH_Ec/Ior dB -3 -3 DwPCH_Ec/Ior dB 0 0 OCNS_Ec/Ior dB -3 -3 dB 3 3 3 3 dBm/1.28 MHz -70 PCCPCH RSCP dBm -70 ...
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8.6.5.2.5.3 7,68 Mcps TDD Option
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8.6.5.3 Combined UTRA TDD inter-frequency and E-UTRA FDD cell search under fading propagation conditions
Editor’s note: This Test case is incomplete for frequencies above 3GHz • The Test system uncertainties applicable above 3GHz are undefined • The Test Tolerances and Test Requirements applicable above 3GHz are undefined
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8.6.5.3.1 Definition and applicability
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8.6.5.3.1.1 3,84 Mcps TDD Option
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8.6.5.3.1.2 1,28 Mcps TDD Option
The cell search delay is defined as the time from the beginning of a cell becoming detectable and fulfilling an event triggering condition, to the moment when the UE sends event triggered measurement report for this cell. This requirement assumes that the measurement report is not delayed by other RRC signalling on the...
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8.6.5.3.1.3 7,68 Mcps TDD Option
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8.6.5.3.2 Minimum requirement
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8.6.5.3.2.1 3,84 Mcps TDD Option
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8.6.5.3.2.2 1,28 Mcps TDD Option
The UE shall send one Event 2B triggered measurement report for inter-frequency UTRA TDD cell (Cell2), with a measurement reporting delay less than 5s from the beginning of time period T2. The UE shall send one Event 3a triggered measurement report for E-UTRA FDD cell (Cell3), with a measurement reporting delay less th...
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8.6.5.3.2.3 7,68 Mcps TDD Option
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8.6.5.3.3 Test purpose
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8.6.5.3.3.1 3,84 Mcps TDD Option
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8.6.5.3.3.2 1,28 Mcps TDD Option
The purpose of this test is to verify that the UE makes correct reporting of an event within the required times when doing inter frequency and E-UTRA FDD measurements. To verify that the UE meets the minimum time requirements for identifying neighbouring inter-frequency TDD cell and E-UTRA FDD cell. The test will partl...
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8.6.5.3.3.3 7,68 Mcps TDD Option
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8.6.5.3.4 Method of test
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8.6.5.3.4.1 3,84 Mcps TDD Option
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8.6.5.3.4.2 1,28 Mcps TDD Option
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8.6.5.3.4.2.1 Initial conditions
Test environment : normal; see clauses G.2.1 and G.2.2. Frequencies to be tested : see table J.2 in Annex J. This test scenario comprised of 2 UTRA TDD cells working on different frequency, and 1 E-UTRA FDD cell. General test parameters are given in the table 8.6.5.3.4.2-1, and they are signalled from test device. In t...
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8.6.5.3.4.2.2 Test Procedure
1) The UE is switched on. 2) The RF parameters are set up according to T1 in tables 8.6.5.3.5.2-1 and 8.6.5.3.5.2-2. 3) A call is set up according to the generic set-up procedure specified in TS 34.108 [3] subclause 7.3.2 to place the UE in CELL_DCH. 4) SS shall transmit a MEASUREMENT CONTROL message (event 2B for inte...
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8.6.5.3.4.2.3 7,68 Mcps TDD Option
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8.6.5.3.5 Test requirements
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8.6.5.3.5.1 3,84 Mcps TDD Option
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8.6.5.3.5.2 1,28 Mcps TDD Option
Table 8.6.5.3.5.2-1: Cell specific test parameters for combined UTRA TDD inter-frequency and E-UTRA FDD cell search under fading propagation conditions (cell 1 and cell 2) Parameter Unit Cell 1 (UTRA) Cell 2 (UTRA) Timeslot Number 0 DwPTS 0 DwPTS T1 T2 T1 T2 T1 T2 T1 T2 UTRA RF Channel Number Note 1 Channel 1 Channel 2...
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8.6.5.3.5.3 7,68 Mcps TDD Option
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8.6.5.4 Combined UTRA TDD inter-frequency and E-UTRA TDD cell search under fading propagation conditions
Editor’s note: This Test case is incomplete for frequencies above 3GHz • The Test system uncertainties applicable above 3GHz are undefined • The Test Tolerances and Test Requirements applicable above 3GHz are undefined
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8.6.5.4.1 Definition and applicability
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8.6.5.4.1.1 3,84 Mcps TDD Option
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8.6.5.4.1.2 1,28 Mcps TDD Option
The cell search delay is defined as the time from the beginning of a cell becoming detectable and fulfilling an event triggering condition, to the moment when the UE sends event triggered measurement report for this cell. This requirement assumes that the measurement report is not delayed by other RRC signalling on the...
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8.6.5.4.1.3 7,68 Mcps TDD Option
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8.6.5.4.2 Minimum requirement
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8.6.5.4.2.1 3,84 Mcps TDD Option
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8.6.5.4.2.2 1,28 Mcps TDD Option
The UE shall send one Event 2B triggered measurement report for inter-frequency UTRA TDD cell (Cell2), with a measurement reporting delay less than 5s from the beginning of time period T2. The UE shall send one Event 3a triggered measurement report for E-UTRA TDD cell (Cell3), with a measurement reporting delay less th...
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8.6.5.4.2.3 7,68 Mcps TDD Option
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8.6.5.4.3 Test purpose
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8.6.5.4.3.1 3,84 Mcps TDD Option
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8.6.5.4.3.2 1,28 Mcps TDD Option
The purpose of this test is to verify that the UE makes correct reporting of an event within the required times when doing inter frequency and E-UTRA TDD measurements. To verify that the UE meets the minimum time requirements for identifying neighbouring inter-frequency TDD cell and E-UTRA TDD cell. The test will partl...
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8.6.5.4.3.3 7,68 Mcps TDD Option
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8.6.5.4.4 Method of test
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8.6.5.4.4.1 3,84 Mcps TDD Option
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8.6.5.4.4.2 1,28 Mcps TDD Option
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8.6.5.4.4.2.1 Initial conditions
Test environment : normal; see clauses G.2.1 and G.2.2. Frequencies to be tested : see table J.2 in Annex J. This test scenario comprised of 2 UTRA TDD cells working on different frequency, and 1 E-UTRA TDD cell. General test parameters are given in the table 8.6.5.4.4.2-1, and they are signalled from test device. In t...
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8.6.5.4.4.2.2 Test Procedure
1) The UE is switched on. 2) The RF parameters are set up according to T1 in tables 8.6.5.4.5.2-1 and 8.6.5.4.5.2-2. 3) A call is set up according to the generic set-up procedure specified in TS 34.108 [3] subclause 7.3.2 to place the UE in CELL_DCH. 4) SS shall transmit a MEASUREMENT CONTROL message (inter frequency)....
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8.6.5.4.5 Test requirements
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8.6.5.4.5.1 3,84 Mcps TDD Option
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8.6.5.4.5.2 1,28 Mcps TDD Option
Table 8.6.5.4.5.2-1: Cell specific test parameters for combined UTRA TDD inter-frequency and E-UTRA TDD cell search under fading propagation conditions (cell 1 and cell 2) Parameter Unit Cell 1 (UTRA) Cell 2 (UTRA) Timeslot Number 0 DwPTS 0 DwPTS T1 T2 T1 T2 T1 T2 T1 T2 UTRA RF Channel Number Note 1 Channel 1 Channel 2...
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8.6.5.4.5.3 7,68 Mcps TDD Option
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8.7 Measurements Performance Requirements
Unless explicitly stated:  Reported measurements shall be within defined range in 90 % of the cases.  Measurement channel is 12.2 kbps as defined in annex C, sub-clause C.3.1. This measurement channel is used in active cell and cells to be measured.  Cell 1 is the active cell.  Single task reporting.  Power contro...
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8.7.1 P-CCPCH RSCP
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8.7.1.1 Intra frequency measurement accuracy for 3,84 Mcps TDD Option
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8.7.1.1.1 Absolute accuracy requirement
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8.7.1.1.1.1 Definition and applicability
The absolute accuracy of P-CCPCH RSCP is defined as the P-CCPCH RSCP meaasured from one cell compared to the actual P-CCPCH RSCP power from the same cell. The requirements and this test apply to all types of UTRA TDD UE.
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8.7.1.1.1.2 Minimum Requirements
The absolute accuracy requirements in table 8.7.1.1.1.1 are valid under the following conditions: P-CCPCH RSCP  -102 dBm. Table 8.7.1.1.1.1: P-CCPCH_RSCP absolute accuracy Parameter Unit Accuracy [dB] Conditions Normal condition Extreme condition Io [dBm/3.84MHz] P-CCPCH_RSCP dBm  6  9 -94...-70 dBm  8  11 -70...-...
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8.7.1.1.1.3 Test Purpose
The purpose of this test is to verify that the absolute P-CCPCH RSCP measurement accuracy is within the specified limits.
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8.7.1.1.1.4 Method of test
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8.7.1.1.1.4.1 Initial conditions
Test environment: normal, TL/VL, TL/VH, TH/VL, TH/VH; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. In this case all cells are on the same frequency. Cell 1 and cell 2 shall be synchronised, i.e. share the same frame and timeslot timing. The DL DPCH shall be transmitted in timeslot...
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8.7.1.1.1.4.2 Procedure
1) SS shall transmit MEASUREMENT CONTROL message. 2) UE shall transmit periodically MEASUREMENT REPORT messages. 3) SS shall check PCCPCH_RSCP value in MEASUREMENT REPORT messages. PCCPCH_RSCP power of Cell 1 reported by UE is compared to actual PCCPCH_RSCP power for each MEASUREMENT REPORT message. 4) SS shall count n...
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8.7.1.1.1.5 Test requirements
The PCCPCH RSCP measurement accuracy shall meet the requirements in clause 8.7.1.1.1.2 for at least 900 of the measurement reports at each input level in step 4. NOTE: If the above Test Requirement differs from the Minimum Requirement then the Test Tolerance applied for this test is non-zero. The Test Tolerance for thi...
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8.7.1.1.2 Relative accuracy requirement
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8.7.1.1.2.1 Definition and applicability
The relative accuracy of PCCPCH RSCP is defined as the PCCPCH RSCP measured from one cell compared to the PCCPCH RSCP measured from another cell on the same frequency. The requirements and this test apply to all types of UTRA TDD UE.
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8.7.1.1.2.2 Minimum Requirements
The relative accuracy requirements in table 8.7.1.1.2.1 are valid under the following conditions: P-CCPCH RSCP  -102 dBm. Relative Io difference [dB] ≤ relative RSCP difference [dB] It is assumed that the measurements of P-CCPCH RSCP1 and P-CCPCH RSCP2 can be performed within 20ms due to slot allocations in the cells ...
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8.7.1.1.2.3 Test Purpose
The purpose of this test is to verify that the relative P-CCPCH RSCP measurement accuracy is within the specified limits.
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8.7.1.1.2.4 Method of test
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8.7.1.1.2.4.1 Initial conditions
Test environment: normal, TL/VL, TL/VH, TH/VL, TH/VH; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. In this case all cells are on the same frequency. Cell 1 and cell 2 shall be synchronised, i.e. share the same frame and timeslot timing. The DL DPCH shall be transmitted in timeslot...
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8.7.1.1.2.4.2 Procedure
1) SS shall transmit MEASUREMENT CONTROL message. 2) UE shall transmit periodically MEASUREMENT REPORT messages. 3) SS shall check PCCPCH_RSCP value of Cell 1 and Cell 2 in MEASUREMENT REPORT messages. PCCPCH RSCP power value measured from Cell 1 is compared to PCCPCH RSCP power value measured from Cell 2 for each MEAS...
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8.7.1.1.2.5 Test requirements
The PCCPCH RSCP measurement accuracy shall meet the requirements in clause 8.7.1.1.2.2 for at least 900 of the measurement reports at each input level in step 4. NOTE: If the above Test Requirement differs from the Minimum Requirement then the Test Tolerance applied for this test is non-zero. The Test Tolerance for thi...
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8.7.1.2 Inter frequency measurement accuracy for 3,84 Mcps TDD Option
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8.7.1.2.1 Relative accuracy requirement
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8.7.1.2.1.1 Definition and applicability
The P-CCPCH_RSCP inter-frequency relative accuracy is defined as the P-CCPCH_RSCP measured from one cell compared to the P-CCPCH_RSCP measured from another cell on a different frequency. The requirements and this test apply to all types of UTRA TDD UE.
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8.7.1.2.1.2 Minimum Requirements
The relative accuracy requirements in table 8.7.1.2.1.1 are valid under the following conditions: P-CCPCH RSCP  -102 dBm. Table 8.7.1.2.1.1 P-CCPCH_RSCP inter-frequency relative accuracy Parameter Unit Accuracy [dB] Conditions Normal condition Extreme condition Io [dBm/3.84MHz] P-CCPCH_RSCP dBm  6  6 -94...-50 The n...
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8.7.1.2.1.3 Test Purpose
The purpose of this test is to verify that the relative P-CCPCH RSCP measurement accuracy is within the specified limits for the inter frequency case.
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8.7.1.2.1.4 Method of test
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8.7.1.2.1.4.1 Initial conditions
Test environment: normal, TL/VL, TL/VH, TH/VL, TH/VH; see clauses G.2.1 and G.2.2. Frequencies to be tested: mid range; see clause G.2.4. In this case both cells are on different frequencies. The second Beacon timeslot shall be provided in timeslot 8 for cell 1 and in timeslot 10 for cell 2. P-CCPCH RSCP inter frequenc...
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8.7.1.2.1.4.2 Procedure
1) SS shall transmit the MEASUREMENT CONTROL messages for intra frequency and inter frequency measurements. 2) UE shall transmit periodically MEASUREMENT REPORT messages. 3) SS shall check PCCPCH_RSCP value of Cell 1 and Cell 2 in MEASUREMENT REPORT messages. PCCPCH RSCP power value measured from Cell 1 is compared to ...
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8.7.1.2.1.5 Test requirements
The PCCPCH RSCP measurement accuracy shall meet the requirements in clause 8.7.1.2.1.2 for at least 900 of the measurement reports at each input level in step 4. NOTE: If the above Test Requirement differs from the Minimum Requirement then the Test Tolerance applied for this test is non-zero. The Test Tolerance for thi...
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8.7.1.3 Local cell accuracy for 3.84 Mcps TDD option
Void 8.7.1.3A Local cell cccuracy for 1.28 Mcps TDD option 8.7.1.3A.1 Absolute accuracy requirement 8.7.1.3A.1.1 Definition and applicability The absolute accuracy of P-CCPCH RSCP is defined as the P-CCPCH RSCP measured from one cell compared to the actual P-CCPCH RSCP power from the same cell. The requirements and thi...
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8.7.1.4 Local cell absolute accuracy in white noise for 3.84 Mcps TDD
Void 8.7.1.4A Local cell absolute accuracy in white noise for 1.28 Mcps TDD 8.7.1.4A.1 Absolute accuracy requirement 8.7.1.4A.1.1 Definition and applicability The absolute accuracy of P-CCPCH RSCP is defined as the P-CCPCH RSCP measured from one cell compared to the actual P-CCPCH RSCP power from the same cell. The req...
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8.7.2 CPICH measurements (FDD)
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8.7.2.1 CPICH RSCP
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8.7.2.1.1 Absolute measurement accuracy for 3,84 Mcps TDD Option
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8.7.2.1.1.1 Definition and applicability
The absolute accuracy of CPICH RSCP is defined as the CPICH RSCP measured in an UTRA FDD cell on one frequency compared to the actual CPICH RSCP power of that cell on the same frequency. The requirements and this test apply only to UE supporting both UTRA TDD and UTRA FDD.
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8.7.2.1.1.2 Minimum Requirements
The accuracy requirements in table 8.7.2.1.1.1 are valid under the following conditions: - CPICH_RSCP1,2|dBm  -114 dBm. - . Table 8.7.2.1.1.1: CPICH RSCP inter frequency absolute accuracy Parameter Unit Accuracy [dB] Conditions Normal condition Extreme condition Io [dBm/ 3,84 MHz] CPICH_RSCP dBm  6  9 -94...-70 dBm ...
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8.7.2.1.1.3 Test purpose
The purpose of this test is to verify that the CPICH RSCP absolute measurement accuracy is within the specified limits.