TIA EIA-136-940-2000 TDMA Third Generation Wireless Capacity and Performance Characteristics of UWC-136《TDMA第3代无线电通信 UWC-136的容量和性能特点》.pdf
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1、ANSI/TIA/EIA-136-940-2000 Approved: March 31, 2000 TIAIEIA STANDARD TDMA Third Generation Wireless Capacity and Performance Characteristics of U W C-136 TIA/EXA-l36-940 MARCH 2000 TELECOMMUNICATIONS INDUSTRY ASSOCIATION Representing the telecommunications industry in association with the Electronic
2、Industries Alliance Elsctrtinier indurtries Bliiarwe NOTICE TIAEIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting t
3、he purchaser in selecting and obtaining with minimum delay the proper product for his particular need. Existence of such Standards and Publications shall not in any respect preclude any member or nonmember of TIAEIA from manufacturing or selling products not conforming to such Standards and Publicat
4、ions, nor shall the existence of such Standards and Publications preclude their voluntary use by those other than TIAEIA members, whether the standard is to be used either domestically or internationally. Standards and Publications are adopted by TIAEIA in accordance with the American National Stand
5、ards Institute (ANSI) patent policy. By such action, TIAEIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Standard or Publication. Note: require use of an invention covered by patent rights. The users attention is called to the
6、possibility that compliance with this standard may By publication of this standard, no position is taken with respect to the validity of this claim or of any patent rights in connection therewith. The patent holder has, however, filed a statement of willingness to grant a license under these rights
7、on reasonable and nondiscriminatory terms and conditions to applicants desiring to obtain such a license. Details may be obtained from the publisher. This Standard does not purport to address all safety problems associated with its use or all applicable regulatory requirements. It is the responsibil
8、ity of the user of this Standard to establish appropriate safety and health practices and to determine the applicability of regulatory limitations before its use. (From Standards Proposal No. 4027-940 formulated under the cognizance of the TIA TR-45.3 Time Division Digital Technology Subcommittee).
9、Published by TELECOMMUNICATIONS INDUSTRY ASSOCIATION 2000 Standards and Technology Department 2500 Wilson Boulevard Arlington, VA 22201 PRICE: Please refer to current Catalog of or call Global Engineering Documents, USA and Canada (1-800-854-7179) International (303-397-7956) EIA ELECTRONIC INDUSTRI
10、ES ALLIANCE STANDARDS and ENGINEERING PUBLICATIONS All rights reserved Printed in U.S.A. TINEIA-1 36-940 Contents 1 . System Level Simulations for 136 HS Outdoor 1 1.1 Static Capacity Simulation . 1 1.1.1 Load Effects 3 i . 1.2 Coverage Simulations 5 Dynamic System Simulations . 7 1.2.1 Traffic Mode
11、l 7 1.2.2 Simulation . 7 1.2.2.1 Dropping Criteria 7 1.2.2.2 Performance Criteria . 8 384 kbitls Service Results . 9 1.2 1.2.3 2 . Deployment Model Result Matrix . 13 3 . UWC-136 Voice Capacity Enhancements . 16 3.1 Baseline Capacity . 16 3.2 Link Quality Improvement Techniques 17 3.2.1 3.2.1.1 Simu
12、lation Set I . 17 3.2.1.2 Simulation Set II . 19 Capacity Simulations - Adaptive Channel Allocation and Power Control 17 3.2.2 Transmit Diversity . 20 Receive Antenna Diversity at Terminal 21 3.2.3.1 Pre-Selection Diversity: . 21 3.2.3.2 Combining Diversity: 22 Improved Error Correction (ACELP/ Chan
13、nel Coding 2 (CC2) . 22 Voice Activity Detection . 22 8kbps coder over 8PSK (TIAEIA-136-410 over 8PSK) 23 Voice Capacity in UWC.136, Method 1: . 24 Voice Capacity in UWC.136, Method 2: . 26 3.4.1 Case 1, capacity gains with no antenna diversity: 26 3.4.2 Case 2, capacity gains with mobile station an
14、tenna diversity 27 3.4.3 The Gains due to TIMEIA-136-410 over 8-PSK 28 3.2.3 3.2.4 3.2.5 3.2.6 3.3 3.4 4 . Change History for TIAIELA-136-940 30 i TINEIA-1 36-940 Tables Table 1 Summary of static system simulation results for Pedestrian A . 2 Table 2 Summary of static system simulation results for V
15、ehicular A50 Environment 3 Table 3 Deployment Matrix for 384 kbitls Service Pedestrian Environment 13 Table 4 Deployment Matrix for 384 kbitls Vehicular A50 Environment 13 Table 5 Deployment Matrix for 384 kbitls Vehicular A120 Environment 14 Table 6 Deployment Matrix for 64 kbitls Service Pedestria
16、n Environment 14 Table 7 Deployment Matrix for 64 kbitls Service Vehicular A50 Environment . 15 Table 8 Deployment Matrix for 64 kbitls Service for Vehicular A120 Environment . 15 Table 9 Summary of System Simulation Results with Fast ACA . I . 17 Table 10 Summary of System Simulation Results with F
17、ast ACA . II 19 Table 11 Performance of Transmit Diversity 21 Table 12 Performance of Pre-Selection Diversity . 21 Table 13 Performance of Combining Diversity with Interference Rejection and one Co-Channel Interferer22 Table 14 Performance of Combining Diversity with Interference Rejection and two C
18、o-Channel Interferer22 Table 15 Downlink Quality Gains that Lower the Required C/N . 26 Table 16 Uplink Quality Gains that Lower the Required C/N 26 Table 17 Downlink Quality Gains that Lower the Required C/N . 27 Table 18 Uplink Quality Gains that Lower the Required C/N 28 ii TINEIA-1 36-940 Figure
19、 1 . Throughput distribution obtained from static simulation with PCS-6 through PCS-1 for Pedestrian A Environment . 2 Figure 2 . Throughput distribution obtained from static simulation with PCS-6 through PCS- 1 for Vehicular A50 Environment . 3 Figure 3 . Spectral Efficiency as a Function of Offere
20、d Load for Pedestrian A Environment 4 Figure 4 . Coverage with mobile receiver diversity for Pedestrian A Environment 5 Figure 5 . Coverage with mobile receiver diversity for Vehicular A50 Environment 6 Figure 6 . Coverage with mobile receiver diversity for Vehicular A120 Environment 6 Figure 7 . Sp
21、ectral Efficiency Performance for 384 kbitls Packet Data Service Environment A . 9 Figure 8 . Loading Performance for 384 kbitls Packet Data Service Environment A . 10 Figure 9 . Spectral Efficiency Performance for 384 kbitls Packet Data Service Environment B 11 Figure 10 . Loading Performance for 3
22、84 kbitls Packet Data Service Environment B . 12 Figure 11 . FCA System . 18 Figure 12 . ACA System . 18 Figure 13 . CDF for Downlink C/I 20 iii TINEIA-1 36-940 THIS PAGE INTENTIONALLY LEFT BLANK iv TINEIA-1 36-940 1 1. System Level Simulations for 136 HS Outdoor 2 3 1.1 Static Capacity Simulation 4
23、 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 In order to evaluate the system performance of the 136 HS Outdoor concept, static packet data simulations have been performed. The following assumptions have been made: 113 reuse No frequency hopping Log-normal fading with sta
24、ndard deviation of 10 dl3 Path loss according to M.1225 Models Pedestrian A, Vehicular A50, and Vehicular A120 environments Exponentially distributed packet size with a mean of 1600 bytes 2 Branch MRC diversity is used. No power control is assumed Ideal Link adaptation is performed every 100 ms, i.e
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