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Low-complexity transmit antenna selection schemes for spatial modulation

机译:用于空间调制的低复杂度发射天线选择方案

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摘要

Link adaptation in the form of Euclidean distance-based antenna selection (EDAS) at the transmitter, has demonstrated a significant improvement in the error performance of spatial modulation (SM). However, when a large transmit antenna array is required, the computational complexity imposed by the EDAS scheme is inherently high. Thus, there is great motivation for the development of low-complexity transmit antenna selection (LCTAS) schemes for SM. In this study, the authors propose several LCTAS schemes for SM. Assuming full knowledge of the channel at the receiver, the proposed schemes select a subset of the candidate transmit antenna elements based on channel amplitude, antenna correlation, Euclidean distance between transmit vectors or a combination of these; demonstrating a significant improvement in error performance compared with conventional SM, while imposing significantly lower computational complexity than EDAS-SM. Moreover, the proposed schemes employ a novel complexity reducing technique, which allows parallel processing of algorithms and can easily be applied to existing schemes.
机译:发射机处的基于欧几里德距离的天线选择(EDAS)形式的链路自适应已证明在空间调制(SM)的误码性能方面有显着改善。但是,当需要较大的发射天线阵列时,EDAS方案带来的计算复杂性本来就很高。因此,有很大的动机来开发用于SM的低复杂度发射天线选择(LCTAS)方案。在这项研究中,作者提出了几种用于SM的LCTAS方案。假设对接收机处的信道有充分的了解,则所提出的方案基于信道幅度,天线相关性,发射矢量之间的欧几里德距离或这些的组合来选择候选发射天线元件的子集。与传统的SM相比,它的错误性能得到了显着改善,同时其计算复杂度比EDAS-SM低得多。此外,所提出的方案采用新颖的降低复杂度的技术,该技术允许并行处理算法并且可以容易地应用于现有方案。

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