MMSE transmit diversity selection for multi-relay cooperative MIMO systems using discrete stochastic gradient algorithms

P. Clarke, R. D. Lamare
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引用次数: 4

Abstract

This paper presents a set of transmit diversity selection algorithms based on discrete stochastic optimization for a two-phase, decode-and-forward, multi-relay cooperative MIMO system with a non-negligible direct path. Transmit diversity selection is performed jointly with channel estimation using discrete stochastic and continuous least squares optimization, respectively. Linear minimum mean square error receivers are used at the relay and destination nodes whilst no forward channel knowledge, precoding or inter-relay communication is required. Sets of candidate transmit diversity selections are generated and methods to optimize the selection whilst avoiding exhaustive searching are presented. The benefits of reducing the cardinality of these sets is shown and the performance of the proposed schemes are assessed via mean square error, bit-error rate and complexity comparisons. The performance and diversity achieved is shown to exceed that of standard multi-relay cooperative MIMO systems and random transmit diversity selection, and closely match that of the exhaustive solution.
基于离散随机梯度算法的多中继合作MIMO系统MMSE发射分集选择
针对具有不可忽略直接路径的两相、译码转发、多中继合作MIMO系统,提出了一套基于离散随机优化的发射分集选择算法。发射分集选择和信道估计分别采用离散随机优化和连续最小二乘优化进行。在中继和目标节点上使用线性最小均方误差接收器,而不需要转发信道知识,预编码或中继间通信。生成了候选发射分集选择集,并给出了在避免穷举搜索的同时优化选择集的方法。本文展示了减少这些集合的基数的好处,并通过均方误差、误码率和复杂性比较来评估所提出方案的性能。所获得的性能和分集优于标准的多中继合作MIMO系统和随机发射分集选择,并与穷举解的性能和分集选择非常接近。
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