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MIMO-DCSK communication scheme and its performance analysis over multipath fading channels 被引量:4

MIMO-DCSK communication scheme and its performance analysis over multipath fading channels
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摘要 The differential chaotic shift keying (DCSK) communication in multiple input multiple output (MIMO) multipath fading chan- nels is considered. A simple MIMO-DCSK communication scheme based on orthogonal multi-codes (OMCs) and equal gain combination (EGC) is proposed, in which OMCs are used to spread the same information bit at each transmitting antenna and the infor- mation bit is detected by EGC at receiving antenna. The OMCs are constructed from one chaotic sequence by means of othogo- nal space-time block coding (OSTBC). The output signal-to-noise ratio (SNR) after EGC is given based on central limit theory (CLT), and it can effectively exploit the spatial diversity of the underlying MIMO system. Simulation results show that the full spatial diversity gain is achieved without channel estimation in the MIMO-DCSK communication scheme and it performs better than MC-EGC for a large number of transmitting antennas. The differential chaotic shift keying (DCSK) communication in multiple input multiple output (MIMO) multipath fading chan- nels is considered. A simple MIMO-DCSK communication scheme based on orthogonal multi-codes (OMCs) and equal gain combination (EGC) is proposed, in which OMCs are used to spread the same information bit at each transmitting antenna and the infor- mation bit is detected by EGC at receiving antenna. The OMCs are constructed from one chaotic sequence by means of othogo- nal space-time block coding (OSTBC). The output signal-to-noise ratio (SNR) after EGC is given based on central limit theory (CLT), and it can effectively exploit the spatial diversity of the underlying MIMO system. Simulation results show that the full spatial diversity gain is achieved without channel estimation in the MIMO-DCSK communication scheme and it performs better than MC-EGC for a large number of transmitting antennas.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2013年第5期729-733,共5页 系统工程与电子技术(英文版)
基金 supported by the National Natural Science Foundation of China(61101097)
关键词 chaotic communication differential chaotic shift keying (DCSK) multiple input multiple output (MIMO) orthogonal multi- code (OMC) equal gain combination (EGC). chaotic communication, differential chaotic shift keying (DCSK), multiple input multiple output (MIMO), orthogonal multi- code (OMC), equal gain combination (EGC).
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