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Low-complexity turbo equalization and multiuser decoding for TD-CDMA

机译:TD-CDMA的低复杂度turbo均衡和多用户解码

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The authors propose a low complexity multiuser joint parallel interference cancellation (PIC) decoder and turbo decision feedback equalizer for code division multiple access (CDMA). In their scheme, an estimate of the interference signal (both multiple-access interference and intersymbol interference) is formed by weighting the hard decisions produced by conventional (i.e., hard-output) Viterbi decoders. The estimated interference is subtracted from the received signal in order to improve decoding in the next iteration. By using asymptotic performance analysis of random-spreading CDMA, they optimize the feedback weights at each iteration. Then, they consider two (mutually related) performance limitation factors: the bias of residual interference and the ping-pong effect. The authors show that the performance of the proposed algorithm can be improved by compensating for the bias in the weight calculation, and they propose a modification of the basic PIC algorithm, which prevents the ping-pong effect and allows higher channel load and/or faster convergence to the single-user performance. The proposed algorithm is validated through computer simulation in an environment fully compliant with the specifications of the time-division duplex mode of third-generation systems, contemplating a combination of time-division multiple access and CDMA and including frequency-selective fading channels, user asynchronism, and power control. The main conclusion of this work is that, for such application, soft-input soft-output decoders (e.g., implemented by the forward-backward BCJR algorithm) are not needed to attain very high spectral efficiency, and simple conventional Viterbi decoding suffices for most practical settings.
机译:作者提出了一种用于码分多址(CDMA)的低复杂度多用户联合并行干扰消除(PIC)解码器和Turbo判决反馈均衡器。在他们的方案中,通过加权常规(即,硬输出)维特比解码器产生的硬判决来形成干扰信号(多址干扰和符号间干扰)的估计。从接收信号中减去估计的干扰,以改善下一次迭代中的解码。通过使用随机扩展CDMA的渐近性能分析,他们优化了每次迭代的反馈权重。然后,他们考虑了两个(相互关联的)性能限制因素:残余干扰的偏差和乒乓效应。作者表明,通过补偿权重计算中的偏差可以提高所提出算法的性能,并且他们提出了对基本PIC算法的改进,以防止乒乓效应并允许更高的信道负载和/或更快的速度。收敛到单用户性能。该算法在完全符合第三代时分双工模式规范的环境中通过计算机仿真进行了验证,并考虑了时分多址和CDMA的组合,并包括频率选择性衰落信道,用户异步性,以及电源控制。这项工作的主要结论是,对于此类应用,不需要软输入软输出解码器(例如,由前向后BCJR算法实现)即可获得非常高的频谱效率,对于大多数应用而言,简单的常规维特比解码就足够了实际设置。

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