信道感知局部搜索(CA-LS)迭代MIMO检测

I-Wei Lai, Chia-han Lee, G. Ascheid, H. Meyr, T. Chiueh
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引用次数: 4

摘要

提出了一种基于局部搜索的高效迭代多输入多输出(MIMO)检测算法。具体而言,由于MIMO信道矩阵扭曲了接收符号的晶格结构,因此提出的信道感知局部搜索(CA-LS)根据瞬时信道实现来定义其搜索邻域。这种与信道相关的邻域可以通过在由QAM向量对之间的差组成的集合中使用球体解码器来有效地识别,这些差被称为增量向量。识别出相对于信道矩阵具有小二次范数的δ向量,然后将其用作CA-LS的搜索方向。利用delta向量的稀疏性和非均匀性等特征来降低SD复杂度。此外,通过重新制定检测准则,大大简化了CA-LS的对数似然比(LLR)计算和搜索。数值仿真结果表明,与其他实用的迭代MIMO检测器(如列表球解码器)相比,CA-LS在错误率和复杂度方面都具有优越的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Channel-aware local search (CA-LS) for iterative MIMO detection
We propose an efficient iterative multiple-input multiple-output (MIMO) detection algorithm based on the local search. Specifically, since the MIMO channel matrix twists the lattice structure of the received symbols, the proposed channel-aware local search (CA-LS) defines its search neighborhood according to the instantaneous channel realization. Such channel-dependent neighborhood can be efficiently identified by using the sphere decoder in a set that comprises the differences between pairs of QAM vectors, which is termed as delta vectors. The delta vectors with small quadratic norms with respect to the channel matrix are identified and then used as the search directions of the CA-LS. Features like sparsity and non-uniformity of delta vectors are exploited to reduce the SD complexity. Furthermore, by reformulating the detection criterion, the log-likelihood ratio (LLR) computations and searches of the CA-LS are greatly simplified. Numerical simulations demonstrate that compared with other practical iterative MIMO detectors, e.g., the list sphere decoder, the CA-LS achieves superior performance in both error rate and complexity aspects.
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