Reduced complexity sphere decoding using a geometrical approach

M. Abbasi, A. Tadaion, S. Gazor
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引用次数: 1

Abstract

In this paper we propose an algorithm with reduced complexity for the sphere detection (SD) which is used in multiple input multiple output (MIMO) detection algorithms without any performance degradation. The trade-off between the complexity and the bit error rate is a main challenge in wireless MIMO systems. The maximum likelihood (ML) detector considered as the optimum detector in the literatures. Since the complexity of the naive ML detectors is significantly high, the SD algorithms are proposed to lower the complexity. In this paper, we use the result of the geometrical decoder (GD) proposed in [8] which performs as the ML detector and has lower complexity than SD algorithm. We propose a method to further reduce the complexity of this SD algorithm. We show that the complexity is further reduced by almost 60%, i.e, the number of nodes visited by the proposed SD method is in average 60% less than that of the original one.
使用几何方法降低了球体解码的复杂性
在本文中,我们提出了一种降低复杂度的球体检测(SD)算法,该算法用于多输入多输出(MIMO)检测算法中,且不降低性能。在复杂性和误码率之间的权衡是无线MIMO系统面临的主要挑战。文献中认为最大似然检测器是最优检测器。由于朴素ML检测器的复杂度非常高,提出了SD算法来降低复杂度。在本文中,我们使用了[8]中提出的几何解码器(GD)的结果,它作为ML检测器,比SD算法具有更低的复杂度。我们提出了一种进一步降低SD算法复杂度的方法。我们发现,复杂度进一步降低了近60%,即提出的SD方法访问的节点数量比原始方法平均减少了60%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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