Spatial Modulation - A New Low Complexity Spectral Efficiency Enhancing Technique

R. Mesleh, H. Haas, Chang Wook Ahn, Sangboh Yun
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引用次数: 565

Abstract

The multiplexing gain of multiple antenna transmission strongly depends on transmit and receive antenna spacing, transmit antenna synchronization, and the algorithm used to eliminate interchannel interference (ICI) at the receiver. In this paper, a new transmission approach, called spatial modulation, that entirely avoids ICI and requires no synchronization between the transmitting antennas while maintaining high spectral efficiency is presented. A block of information bits is mapped into a constellation point in the signal and the spatial domain, i.e. into the location of a particular antenna. The receiver estimates the transmitted signal and the transmit antenna number and uses the two information to de-map the block of information bits. For this purpose, a novel transmit antenna number detection algorithm called iterative-maximum ratio combining (i-MRC) is presented. Spatial modulation is used to transmit different number of information bits and i-MRC is used to estimate both the transmitted signal and the transmit antenna number. The results are compared to ideal V-BLAST (vertical-Bell Lab layered space-time) and to MRC. Spatial modulation outperforms MRC. The (bit-error-ratio) BER performance and the achieved spectral efficiency is comparable to V-BLAST. However, spatial modulation results in a vast reduction in receiver complexity.
空间调制——一种新的低复杂度频谱效率提高技术
多天线传输的复用增益很大程度上取决于发射和接收天线的间距、发射天线的同步以及在接收端消除信道间干扰(ICI)的算法。本文提出了一种新的传输方法,称为空间调制,它完全避免了ICI,并且在保持高频谱效率的同时不需要发射天线之间的同步。信息位块被映射到信号和空间域中的星座点,即映射到特定天线的位置。接收机估计发射信号和发射天线数,并使用这两个信息去映射信息位块。为此,提出了一种新的发射天线数检测算法——迭代-最大比值组合(i-MRC)。空间调制用于传输不同数量的信息位,i-MRC用于估计发射信号和发射天线数。结果与理想的V-BLAST(垂直贝尔实验室分层时空)和MRC进行了比较。空间调制优于MRC。误码率性能和频谱效率与V-BLAST相当。然而,空间调制大大降低了接收机的复杂度。
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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