3G WCDMA系统中发射天线分集性能分析

R. Vishwakarma, K. Shanmugan
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引用次数: 3

摘要

发射分集方案在蜂窝基站上使用多个天线,在不增加移动站复杂性的情况下提高前向链路传输性能(吞吐量、范围、容量和质量)。本文试图通过计算机仿真来评估不同发射分集方案对前向链路性能的改善。研究了第三代WCDMA系统中提出的空时发射分集(STTD)和反馈模式发射分集(FBTD)方案。在不同的信道条件和移动速度下,分析了由于信道估计不完善而产生的信道估计噪声和由于信噪比估计不完善而产生的闭环功率控制不完善对性能的影响。仿真中考虑的信道环境有单射线瑞利衰落、车辆信道和行人信道。可以观察到,在功率控制下,在高用户速度(> 120kmph)下,ND、STTD和FBTD的性能差异不显著(约为1 dB至2 dB)。由此得出结论,在基于SIR的闭环功率控制和不完全信道估计下,WCDMA系统的下行分集增益并不显著。
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Performance analysis of transmit antenna diversity in 3G WCDMA system
Transmit diversity schemes employ several antennas at the cellular base station to improve the forward link transmission performance (throughput, range, capacity and quality) without increasing the complexity of the mobile station. This paper attempts to evaluate the forward link performance improvement using different transmit diversity schemes by means of computer simulation. The schemes considered are space-time transmit diversity (STTD) and feedback mode transmit diversity (FBTD) proposed in a third generation (3G) WCDMA system. The effect of noisy channel estimates, due to imperfect channel estimation, and of imperfect closed loop power control, due to imperfect signal to interference ratio (SIR) estimation, on the performance is analyzed under different channel conditions and mobile velocities. The channel environments considered in the simulations are single ray Rayleigh fading, vehicular channel and pedestrian channel. It is observed that, with power control, the difference in the performance of ND, STTD and FBTD is not significant (around 1 dB to 2 dB) at high user velocities (>120 kmph). It is hence concluded that that with SIR based closed loop power control and imperfect channel estimation, diversity gains are not significant in the downlink of WCDMA system.
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