Generalised spatial modulation with multiple active transmit antennas

Jinlin Fu, Chunping Hou, W. Xiang, Lei Yan, Yonghong Hou
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引用次数: 167

Abstract

We propose a new generalised spatial modulation (GSM) technique, which can be considered as a generalisation of the recently proposed spatial modulation (SM) technique. SM can be seen as a special case of GSM with only one active transmit antenna. In contrast to SM, GSM uses the indices of multiple transmit antennas to map information bits, and is thus able to achieve substantially increased spectral efficiency. Furthermore, selecting multiple active transmit antennas enables GSM to harvest significant transmit diversity gains in comparison to SM, because all the active antennas transmit the same information. On the other hand, inter-channel interference (ICI) is completely avoided by transmitting the same symbols through these active antennas. We present theoretical analysis using order statistics for the symbol error rate (SER) performance of GSM. The analytical results are in close agreement with our simulation results. The bit error rate performance of GSM and SM is simulated and compared, which demonstrates the superiority of GSM. Moreover, GSM systems with configurations of different transmit and receive antennas are studied. Our results suggest that using a less number of transmit antennas with a higher modulation order will lead to better BER performance.
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具有多个主动发射天线的广义空间调制
我们提出了一种新的广义空间调制(GSM)技术,它可以被认为是最近提出的空间调制(SM)技术的推广。SM可以看作是GSM的一个特例,只有一个主动发射天线。与SM相比,GSM使用多个发射天线的索引来映射信息位,因此能够大大提高频谱效率。此外,与SM相比,选择多个有源发射天线使GSM能够获得显著的发射分集增益,因为所有有源天线都传输相同的信息。另一方面,通过这些有源天线传输相同的信号,完全避免了信道间干扰。本文利用序统计量对GSM的符号误码率性能进行了理论分析。分析结果与仿真结果吻合较好。对GSM和SM的误码率性能进行了仿真和比较,证明了GSM的优越性。此外,还研究了不同收发天线配置的GSM系统。我们的研究结果表明,使用较少数量的发射天线和更高的调制阶数将获得更好的误码率性能。
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