Survey on an efficient, low-complex tuple search based sphere detector

Esther P. Adeva, B. Mennenga, G. Fettweis
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引用次数: 8

Abstract

Nowadays, high detection complexity is known to be one of the major challenges in MIMO communications based on spatial multiplexing. Tuple search (TS) sphere detection was recently introduced, demonstrating to represent a promising approach in this context. It provides significant complexity reduction in comparison to conventional algorithms, providing in addition close to full max-log-APP BER performance. Due to the increasing multiplicity of communication standards as well as variety of mobile applications demanded by users, tackling the lack of flexibility of common receiver realizations has become an additional key challenge in MIMO detection. Aim of this work is to demonstrate that the benefit provided by the tuple search strategy is still present in a wide range of possible transmission schemes. For this purpose, a novel efficiency indicator is introduced, based on which an exhaustive analysis is performed. The existing tuple search detector has been adapted to deal with different constellation orders and transmit/receive antenna configurations. In addition, the applied MMSE strategy has been modified to support undetermined systems. The obtained results show the superiority of the proposed sphere detector under different transmission conditions, thus demonstrating its efficiency and flexibility.
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基于高效、低复杂度元组搜索的球面探测器研究
目前,高检测复杂度是基于空间复用的MIMO通信面临的主要挑战之一。元组搜索(TS)球体检测最近被引入,证明在这种情况下代表了一种有前途的方法。与传统算法相比,它提供了显著的复杂性降低,此外还提供了接近完整的最大日志app误码率性能。由于通信标准的日益多样化以及用户所需的各种移动应用,解决通用接收机实现缺乏灵活性的问题已成为MIMO检测中的另一个关键挑战。这项工作的目的是证明元组搜索策略提供的好处仍然存在于广泛的可能的传输方案中。为此,引入了一种新的效率指标,并在此基础上进行了详尽的分析。现有的元组搜索探测器已经适应了不同的星座顺序和发射/接收天线配置。此外,应用的MMSE策略已被修改以支持待定系统。实验结果表明,所提出的球面探测器在不同传输条件下都具有一定的优越性,从而证明了它的高效性和灵活性。
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