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Diversity Reception of an Asynchronous Blind Adaptive Multiuser Detector Through Correlated Nakagami Fading Channel

机译:通过相关的Nakagami衰落信道的异步盲自适应多用户检测器的分集接收

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摘要

In this paper, blind adaptive multiuser detection (MUD) technique is developed for uplink transmission in multiuser space diversity DS-CDMA system to overcome multipath fading effect and multiple access interference. The system consists of a space diversity, a precombining blind adaptive detector (PBAD), and a weight adaptation technique based on the minimization of the mean output energy (MOE). The bit error rate (BER) performance of this receiver for asynchronous DS-CDMA signals with independent and correlated antenna branches under Nakagami fading channel for BPSK system is evaluated. It has been seen that the use of antenna diversity can yield substantial improvement in performance even if the correlation between the antenna elements is relatively large (up to 0.795). However, the large correlation values pose a significant reduction in the diversity gain in comparison with the zero correlation situation. It has also been confirmed by simulations that the PBAD provides a significant receiver performance in comparison with the RAKE receiver employing antenna diversity.
机译:本文针对多用户空间分集DS-CDMA系统中的上行传输,开发了盲自适应多用户检测(MUD)技术,以克服多径衰落效应和多址干扰。该系统由空间分集,预组合盲自适应检测器(PBAD)和基于最小平均输出能量(MOE)的权重自适应技术组成。评估了该接收器在BPSK系统的Nakagami衰落信道下具有独立和相关天线分支的异步DS-CDMA信号的误码率(BER)性能。可以看出,即使天线元件之间的相关性相对较大(高达0.795),使用天线分集也可以显着提高性能。但是,与零相关情况相比,较大的相关值会大大降低分集增益。通过仿真也已经证实,与采用天线分集的RAKE接收机相比,PBAD具有显着的接收机性能。

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