Low-rank Wiener filtering for asynchronous DS-CDMA systems with adaptive antenna arrays

Chia-Chang Hu, I. Reed, Xiaoli Yu
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Abstract

In this paper, a novel space-time adaptive near-far robust array receiver for asynchronous DS-CDMA systems is developed without the need for prior synchronization. There are the same basic requirements that are needed by the conventional receiver of an asynchronous DS-CDMA system. To implement in real-time systems a computationally efficient version of the proposed receiver is developed that is based on the concept of the multistage Wiener filter (MWF) of Goldstein and Reed. This multistage technique results in a self-synchronizing detection criterion that requires no inversion or eigendecomposition of a covariance matrix. As a consequence this receiver achieves a complexity that is only a linear function of the size of antenna array (J), the rank of the MWF (M), the system processing gain (N), and the number of samples in a chip interval (S), i.e., O(JMNS). The complexity of the equivalent receiver based on the minimum mean-squared error (MMSE) criterion is a function of O(( JNS)/sup 3/). Moreover, this multistage scheme has a rapid adaptive convergence under limited observation-data support. Simulations are conducted to evaluate the convergence behavior of the proposed receiver with the different amount of sample support and the various rank of the MWF. The performance advantage of the proposed detector over other DS-CDMA receivers is investigated.
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带自适应天线阵列的异步DS-CDMA系统的低秩维纳滤波
针对异步DS-CDMA系统,研制了一种无需预先同步的空时自适应近远鲁棒阵列接收机。异步DS-CDMA系统的传统接收机也需要相同的基本要求。为了在实时系统中实现,基于Goldstein和Reed的多级维纳滤波器(MWF)的概念,开发了一种计算效率高的接收机。这种多阶段技术产生了一种自同步检测准则,不需要对协方差矩阵进行反演或特征分解。因此,该接收机的复杂度仅是天线阵列大小(J)、MWF秩(M)、系统处理增益(N)和芯片间隔内采样数(S)(即O(JMNS))的线性函数。基于最小均方误差(MMSE)准则的等效接收机复杂度是O((JNS)/sup 3/)的函数。此外,该多阶段方案在有限观测数据支持下具有快速的自适应收敛性。通过仿真来评价该接收机在不同样本支持量和不同MWF秩下的收敛性能。研究了该检测器相对于其他DS-CDMA接收机的性能优势。
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