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Penalty Function Based Detector for Generalized Space Shift Keying Massive MIMO Systems

机译:基于罚函数的广义空移键控大规模MIMO系统检测器

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Generalized space shift keying (GSSK) has recently attracted much interest in the study of emerging massive MIMO systems. The maximum likelihood (ML) detection of GSSK can be posed as a 0-1 quadratic program with an equality constraint. The penalty function method is a common way to transform a constrained programming into an unconstrained one. However, determining an ideal penalty factor is not a trivial problem and has not been addressed adequately. In this letter, we prove a lemma to show that the ML detection of GSSK can be converted into an equivalent 0-1 quadratic program if the penalty factor is greater than a small constant. Based on the proposed lemma, we also present an algorithm to determine the penalty factor and finally recover the transmitted signals of GSSK. Simulation results substantiate the performance of the proposed detector.
机译:广义空间移位键控(GSSK)最近引起了人们对新兴的大规模MIMO系统研究的兴趣。可以将GSSK的最大似然(ML)检测设置为具有等式约束的0-1二次程序。罚函数法是将约束程序转换成无约束程序的一种常用方法。但是,确定理想的罚分因子不是一个小问题,并且尚未得到适当解决。在这封信中,我们证明了一个引理,表明如果惩罚因子大于一个小常数,则GSSK的ML检测可以转换为等效的0-1二次程序。基于提出的引理,我们还提出了确定惩罚因子并最终恢复GSSK传输信号的算法。仿真结果证实了所提出检测器的性能。

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