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Minimum mean-squared error iterative successive parallel arbitrated decision feedback detectors for DS-CDMA systems

机译:用于Ds-CDma系统的最小均方误差迭代连续并行仲裁判决反馈检测器

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摘要

In this paper we propose minimum mean squared error (MMSE) iterative successive parallel arbitrated decision feedback (DF) receivers for direct sequence code division multiple access (DS-CDMA) systems. We describe the MMSE design criterion for DF multiuser detectors along with successive, parallel and iterative interference cancellation structures. A novel efficient DF structure that employs successive cancellation with parallel arbitrated branches and a near-optimal low complexity user ordering algorithm are presented. The proposed DF receiver structure and the ordering algorithm are then combined with iterative cascaded DF stages for mitigating the deleterious effects of error propagation for convolutionally encoded systems with both Viterbi and turbo decoding as well as for uncoded schemes. We mathematically study the relations between the MMSE achieved by the analyzed DF structures, including the novel scheme, with imperfect and perfect feedback. Simulation results for an uplink scenario assess the new iterative DF detectors against linear receivers and evaluate the effects of error propagation of the new cancellation methods against existing ones.
机译:在本文中,我们为直接序列码分多址(DS-CDMA)系统提出了最小均方误差(MMSE)迭代连续相继仲裁判决反馈(DF)接收器。我们描述了DF多用户检测器的MMSE设计标准,以及连续,并行和迭代的干扰消除结构。提出了一种新颖的有效DF结构,该结构采用了具有并行仲裁分支的连续抵消和接近最优的低复杂度用户排序算法。然后,将所提出的DF接收器结构和排序算法与迭代级联DF阶段相结合,以减轻具有维特比和Turbo解码的卷积编码系统以及未编码方案的错误传播的有害影响。我们用数学方法研究了通过分析的DF结构(包括新颖的方案)所获得的MMSE之间的关系,这些关系具有不完美和完美的反馈。上行链路情况的仿真结果针对线性接收机评估了新的迭代DF检测器,并对现有的抵消方法评估了误差传播的影响。

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