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A Novel Adaptive Dual-Interleaving and Angle Detection Spatial Modulation Scheme for Wireless Communication Systems

机译:一种用于无线通信系统的新型自适应双交织和角度检测空间调制方案

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Spatial Modulation (SM) is utilized to overcome the negative influences of inter-channel interference (ICI) and enhance the spectral efficiency in multiple-input and multiple-output (MIMO) systems. Bit-interleaved Coded Spatial Modulation (BICSM) is proposed with the aim of improving the Bit Error Rate (BER) performance of SM systems. In our paper, a novel approach based on adaptive dual-interleaving is proposed to enhance the performance of spatial modulation orthogonal frequency division multiplexing (SM-OFDM) systems further. The proposed schemes fully exploits the characteristics of SM particularly and differs the conventional bit-interleaving scheme which neglect the inherent information of SM systems. Simulation results demonstrate that the proposed adaptive dual-interleaving can enhance the BER performance of SM systems apparently and provide higher spectral efficiency simultaneously without increasing the complexity of systems, making it an excellent candidate technology for future wireless local area networks.
机译:空间调制(SM)用于克服通道间干扰(ICI)的负面影响,并增强多输入和多输出(MIMO)系统中的频谱效率。提出了比特交织编码空间调制(BICSM),其目的是提高SM系统的误码率(BER)性能。在本文中,提出了一种基于自适应双交织的新方法,以提高空间调制正交频分复用(SM-OFDM)系统的性能进一步。所提出的方案充分利用了SM的特征,特别是忽略了忽略了SM系统固有信息的传统比特交织方案。仿真结果表明,所提出的自适应双交织可以显然增强SM系统的BER性能,并同时提供更高的光谱效率而不会增加系统的复杂性,使其成为未来无线局域网的优秀候选技术。

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