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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Joint detection with coherent receiver antenna diversity in CDMA mobile radio systems
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Joint detection with coherent receiver antenna diversity in CDMA mobile radio systems

机译:CDMA移动无线电系统中具有相干接收机天线分集的联合检测

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摘要

In code division multiple access (CDMA) mobile radio systems, both intersymbol interference and multiple access interference arise which can be combated by using either elaborate optimum or favorable suboptimum joint detection (JD) techniques. Furthermore, the time variation of the radio channels leads to degradations of the receiver performance. These degradations can be reduced by applying diversity techniques. Using coherent receiver antenna diversity (CRAD) is especially attractive because only the signal processing at the receiver must be modified. In the present paper, the application of CRAD to the more critical uplink of CDMA mobile radio systems with suboptimum JD techniques is investigated for maximal-ratio combining. The authors study six different suboptimum JD techniques based on decorrelating matched filtering, Gauss-Markov estimation, and minimum mean square error estimation with and without decision feedback. These six suboptimum JD techniques which are well-known for single antenna receivers are extended for the application to CRAD. A main concern of the paper is the determining of the SNR performance of the presented JD techniques for CRAD and the achievable average uncoded bit error probabilities for the transmission over rural area, typical urban and bad urban mobile radio channels are determined.
机译:在码分多址(CDMA)移动无线电系统中,会出现符号间干扰和多址干扰,这可以通过使用精心设计的最佳或有利的次最佳联合检测(JD)技术来解决。此外,无线电信道的时间变化导致接收机性能的下降。这些退化可以通过应用分集技术来减少。使用相干接收机天线分集(CRAD)特别有吸引力,因为仅必须修改接收机处的信号处理。在本文中,研究了CRAD在具有次优JD技术的CDMA移动无线电系统的更关键上行链路中的应用,以实现最大比率组合。作者研究了基于去相关匹配滤波,高斯-马尔可夫估计以及有或没有决策反馈的最小均方误差估计的六种不同的次优JD技术。对于单天线接收器众所周知的这六种次优JD技术已扩展为可应用于CRAD。本文的主要关注点是确定所提出的CRAD的JD技术的SNR性能,并确定在农村地区,典型的城市和不良城市移动无线电信道上可实现的平均未编码误码率。

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