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Constellation Design for Quadrature Spatial Modulation

机译:正态空间调制的星座设计

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This paper considers constellation design for quadrature spatial modulation (QSM) to minimize the average probability of error. Different than the constellation design previously obtained for spatial modulation (SM), it is shown that, the error performance of QSM not only depends on the Euclidean distances between the amplitude-phase modulation (APM) symbols and the energies of APM symbols, but also on the in-phase and quadrature components of the QSM symbols. The analysis of the union bound of the average error probability reveals that at a very large number of transmit antennas, the optimal constellations for QSM converge to a quadrature phase-shift keying (QPSK) constellation. Simulation results demonstrate the performance superiority of the obtained constellations over the standard PSK and QAM constellations, as well as the constellations specifically designed for SM.
机译:本文考虑了用于正交空间调制(QSM)的星座设计,以最小化误差的平均概率。与前面获得的空间调制(SM)的星座设计不同,表明,QSM的误差性能不仅取决于幅度相位调制(APM)符号和APM符号的能量之间的欧几里德距离,还取决于APM符号之间的欧几里德距离在QSM符号的同级和正交组件上。对平均误差概率的联合界限的分析显示,在非常大量的发射天线处,QSM的最佳星座会聚到正交相移键控(QPSK)星座。仿真结果证明了所获得的星座上所获得的星座上的性能优势,以及专门为SM设计的星座。

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