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Iterative Equalization using Improved Block DFE for Synchronous CDMA Systems

机译:同步CDMA系统中使用改进的块DFE的迭代均衡

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Iterative equalization using optimal multiuser detector and optimal channel decoder in coded CDMA systems improves the bit error rate (BER) performance tremendously. However, given large number of users employed in the system over multipath channels causing significant multiple-access interference (MAI) and intersymbol interference (ISI), the optimal multiuser detector is thus prohibitively complex. Therefore, the sub-optimal detectors such as low-complexity linear and non-linear equalizers have to be considered. In this paper, a novel low-complexity block decision feedback equalizer (DFE) is proposed for the synchronous CDMA system. Based on the conventional block DFE, the new method is developed by computing the reliable extrinsic log-likelihood ratio (LLR) using two consecutive received samples rather than one received sample in the literature. At each iteration, the estimated symbols by the equalizer is then saved as a priori information for next iteration. Simulation results demonstrate that the proposed low-complexity block DFE algorithm offers good performance gain over the conventional block DFE.
机译:在编码CDMA系统中,使用最佳多用户检测器和最佳信道解码器进行的迭代均衡极大地提高了误码率(BER)性能。但是,鉴于系统中在多径信道上使用的大量用户导致明显的多址干扰(MAI)和符号间干扰(ISI),因此最佳多用户检测器非常复杂。因此,必须考虑次优检测器,例如低复杂度线性和非线性均衡器。本文提出了一种用于同步CDMA系统的新型低复杂度块判决反馈均衡器(DFE)。基于常规块DFE,通过使用两个连续接收的样本而不是文献中的一个接收样本来计算可靠的外在对数似然比(LLR),从而开发了新方法。然后,在每次迭代中,将均衡器估计的符号保存为下一个迭代的先验信息。仿真结果表明,所提出的低复杂度块DFE算法比常规块DFE具有更好的性能增益。

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