On transmit diversity for TD-SCDMA

I. Held, A. Kerroum
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Abstract

In TD-SCDMA (UMTS TDD 1.28 Mcps mode) advanced techniques such as closed loop transmit diversity (CLTD) are foreseen. Deployment of CLTD influences the choice of receiver architecture and depends on propagation conditions, mobile speed, feedback delay, antenna weight computation and quantization. The impact of these factors is quantified and analyzed. In addition, due to recent interest in increasing the number of diversity antennas, results are presented using four antennas for CLTD. All simulations were performed using a setup very similar to TD-SCDMA conformance tests. The results obtained advise the use of a MMSE joint detection receiver architecture. For two transmit antennas, large gains up to 10 dB are achieved for low diversity propagation conditions, however the gains are smaller (/spl sim/2 dB) otherwise. The use of four antennas approximately doubles the gain achieved by two antennas. Also, it was found that higher mobile speeds do not decrease the gain of using CLTD, whereas larger feedback delays negatively impact performance.
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TD-SCDMA的发射分集
在TD-SCDMA (UMTS TDD 1.28 Mcps模式)中,预计将采用闭环传输分集(CLTD)等先进技术。CLTD的部署影响接收机结构的选择,并取决于传播条件、移动速度、反馈延迟、天线权重计算和量化。对这些因素的影响进行了量化分析。此外,由于最近对增加分集天线数量的兴趣,使用四个天线进行CLTD的结果。所有模拟都是使用与TD-SCDMA一致性测试非常相似的设置进行的。获得的结果建议使用MMSE联合检测接收器架构。对于两个发射天线,在低分集传播条件下,增益可达10 dB,而在其他情况下,增益较小(/spl sim/2 dB)。使用四根天线获得的增益大约是两根天线的两倍。此外,研究发现,较高的移动速度并不会降低使用CLTD的增益,而较大的反馈延迟会对性能产生负面影响。
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