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Content for
TR 45.050
Word version: 16.0.0
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V
LCS scenarios
V.1
Introduction
V.2
TOA Type A LMU in a Co-Located Deployment
V.3
Discussion of TOA LMU RF Specification
V.4
Simulation results for TOA-LMU performance
V.5
Discussion of RIT measurement performance of TOA LMU
V.6
Simulations Results for E-OTD LMUs and E-OTD Capable MSs
V.7
BTS Frequency Source Stability, E-OTD reporting periods and E-OTD Location Accuracy
...
V
LCS scenarios
Word‑p. 226
V.1
Introduction
V.2
TOA Type A LMU in a Co-Located Deployment
V.2.1
Constraints
V.2.2
Frequency Bands and Channel Arrangement (clause 2 of GSM 05.05)
V.2.3
Proximity for DCS1800/PCS1900
V.2.4
Inputs needed
Word‑p. 227
V.2.5
Conclusion
V.3
Discussion of TOA LMU RF Specification
V.3.1
Introduction
V.3.2
Analysis Model
Word‑p. 228
V.3.3
Results
V.3.4
Conclusions
Word‑p. 229
V.4
Simulation results for TOA-LMU performance
V.4.1
Introduction and requirements
V.4.2
Simulation model
Word‑p. 232
V.4.3
Assumed TOA estimation algorithm
V.4.4
Simulation results
Word‑p. 233
V.4.4.1
Sensitivity performance
V.4.4.2
Interference performance
V.4.4.3
Multipath performance
Word‑p. 234
V.4.4.4
Positioning Performance
Word‑p. 235
V.5
Discussion of RIT measurement performance of TOA LMU
Word‑p. 236
V.6
Simulations Results for E-OTD LMUs and E-OTD Capable MSs
Word‑p. 237
V.6.1
Introduction
V.6.2
E-OTD Measurement Accuracy
V.6.2.1
Sensitivity Performance
V.6.2.2
Interference Performance
Word‑p. 238
V.6.2.3
Multipath performance
Word‑p. 240
V.6.3
Location accuracy
Word‑p. 241
V.6.3.1
Network parameters
V.6.3.2
Simulation results
V.7
BTS Frequency Source Stability, E-OTD reporting periods and E-OTD Location Accuracy
Word‑p. 242
V.7.1
Factors determining E-OTD stability
V.7.2
Relationship between range errors and location error
Word‑p. 243