Multi-user decision-feedback space-time processing with partial cross-feedback connectivity

S. Roy, D. Falconer
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引用次数: 9

Abstract

This paper investigates space-time receiver architectures in multi-user wireless systems where optimal idealized (infinite-length) space-time filtering is applied to minimize the mean-square error. Both feedforward, decision-feedback and cross-decision feedback filters are employed; it follows that not only does the system eliminate the post-cursor ISI (intersymbol interference) but also some portion of the post-cursor CCI (co-channel interference). Such a receiver is most useful in the context of an SDMA (space division multiple access) system since the base station then has readily available knowledge on the decisions of the in-cell co-channel interfering signals. However, significant CCI is also received from outside the cell for which there is normally no decision information available. Therefore, in-cell and out-of-cell co-channel interferers will be treated differently by the receiver since no cross-feedback filter can be implemented for the out-of-cell signals. Our analysis leads to a closed-form expression for the minimum achievable MSE (mean-square error) for both fully- and partially-connected cross-decision feedback systems (XDF). Numerical results compare the performance of XDF systems with standard space-time DF and linear processing as well as the matched-filter bound.
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具有部分交叉反馈连通性的多用户决策反馈时空处理
本文研究了多用户无线系统中采用最优理想化(无限长)空时滤波最小化均方误差的空时接收机结构。采用前馈滤波器、决策反馈滤波器和交叉决策反馈滤波器;由此可见,该系统不仅消除了光标后的ISI(码间干扰),而且还消除了光标后的部分CCI(同信道干扰)。这样的接收器在SDMA(空分多址)系统的环境中是最有用的,因为基站有现成的关于小区内同信道干扰信号决定的知识。然而,重要的CCI也从单元外部接收,通常没有可用的决策信息。因此,小区内和小区外的同信道干扰将被接收器区别对待,因为不能对小区外信号实施交叉反馈滤波器。我们的分析得出了全连接和部分连接交叉决策反馈系统(XDF)的最小可实现MSE(均方误差)的封闭表达式。数值结果比较了XDF系统与标准空时DF、线性处理以及匹配滤波界的性能。
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