Constellation Designs for the Spatial Modulation MIMO Systems

Y. Vasavada, Bibin Baby John
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Abstract

This paper shows that the information transmitted over the spatial dimension in the Multiple Input Multiple Output systems with Spatial Modulation (MIMO-SM) is sensitive to the transmission of the conventional amplitude and phase modulated (APM) symbols with small magnitude (e.g. from the inner ring of the constellation). This sensitivity is a limiting factor in the performance of the quadrature amplitude modulated (QAM) SM. We propose three novel MIMO-SM constellation designs to mitigate the performance limitation: (i) a hybrid PSK-QAM MIMO-SM that leverages the constant modulus phase shift keying (PSK) in conjunction with the QAM to minimize the sum of the antenna errors and the APM symbol errors. This is achieved by increasing the number of transmit antennas, which need not be an integer power of two; (ii) MIMO-SM with a novel APM QAM constellation, with optimized radius of the inner constellation ring; and (iii) a MIMO-SM that transmits the QAM symbols from the inner ring on different orthogonal resources (e.g., subcarriers) to reduce their impact on the antenna errors. The simulation results demonstrate the performance benefit of the proposed approaches compared to the conventional SM.
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空间调制MIMO系统的星座设计
研究表明,在多输入多输出空间调制(MIMO-SM)系统中,在空间维度上传输的信息对传统的小幅度(如星座内环)的幅相调制(APM)符号的传输非常敏感。这种灵敏度是影响正交调幅(QAM) SM性能的一个限制因素。我们提出了三种新的MIMO-SM星座设计来缓解性能限制:(i)混合PSK-QAM MIMO-SM,它利用恒定模相移键控(PSK)与QAM相结合来最小化天线误差和APM符号误差的总和。这是通过增加发射天线的数量来实现的,发射天线的数量不必是2的整数次幂;(ii)优化了星座内环半径的新型APM QAM星座MIMO-SM;(iii) MIMO-SM,在不同的正交资源(例如,子载波)上从内环传输QAM符号,以减少它们对天线误差的影响。仿真结果表明,与传统的SM相比,所提出的方法具有更好的性能。
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