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Space-Time Adaptive MMSE Multiuser Receiver Structures for Wideband CDMA Systems

机译:宽带CDMA系统的时空自适应MMSE多用户接收器结构

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In this paper we propose computationally efficient space-time multiuser adaptive minimum mean square error (MMSE) receivers using affine projection adaptive (APA) filtering algorithm for asynchronous wideband code division multiple access systems (W-COMA) in multipath channels. It is found that APA algorithm outperforms normalized least mean square (NLMS) algorithm in convergence characteristics with significant reduction in computational complexity as compared to recursive least square (RLS) algorithm. Three adaptive multiuser receiver architectures are considered, all employ chip-matched filter (CMF) at their front end. In the first two architectures perfect estimation of time delay of individual user is assumed and one CMF is employed per user. The difference between two architectures is that, in the first the samples collected from CMFs are cross-coupled and in the second architecture samples collected for individual users are not combined. In the third architecture, there is no need to estimate the time delay, but fractional sampling is used. It is shown that first architecture outperforms the other two architectures by virtue of its diversity advantage. It is also shown that by exploiting the spatial diversity (using multiple antennas at the receiver) significant improvement can be achieved in the output signal-to-interference-and-noise ratio (SINR).
机译:本文针对多径信道中的异步宽带码分多址系统(W-COMA),提出了一种基于仿射投影自适应(APA)滤波算法的高效计算时空多用户自适应最小均方误差(MMSE)接收机。发现与递归最小二乘(RLS)算法相比,APA算法在收敛特性方面优于归一化最小均方(NLMS)算法,并且在计算复杂度上有显着降低。考虑了三种自适应多用户接收器架构,它们都在前端采用了芯片匹配滤波器(CMF)。在前两种体系结构中,假设对单个用户的时间延迟进行了完美的估计,并且每个用户使用一个CMF。两种体系结构之间的区别在于,在第一种体系结构中,从CMF收集的样本是交叉耦合的,而在第二种体系结构中,未合并为各个用户收集的样本。在第三种架构中,不需要估计时间延迟,但是使用分数采样。结果表明,第一个体系结构凭借其多样性优势胜过其他两个体系结构。还表明,通过利用空间分集(在接收器处使用多个天线),可以显着提高输出信噪比(SINR)。

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