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Multi-user Receivers For Synchronous And Asynchronous Transmissions For Chaos-based Multiple-access Systems

机译:多用户接收器,用于基于混沌的多址系统的同步和异步传输

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This paper addresses the problem of multi-user detection for a multiple-access system based on chaotic communications. In particular, one considers the differential chaos shift keying (DCSK) modulation. Two kinds of transmissions are considered: synchronous transmissions, where the bit epochs are aligned at the receiver, and asynchronous transmissions. Different detectors are studied for both kinds of transmissions: (ⅰ) an optimal receiver, which minimizes a least-squares criterion; this detector requires the knowledge of many user characteristics; (ⅱ) an adaptive LMS detector, which converges to the previous detector without any a priori knowledge concerning the chaotic sequences; this detector is then better suited for practical applications; (ⅲ) detectors based on the estimation of the chaotic sequences. Theoretical performance results are derived for all these detectors. Simulation results are reported, which confirm the theoretical analysis and allows one to compare the proposed detectors. These results show that the chaotic-sequence estimation (CSE)-based detectors are only fitted for synchronous transmissions, but give poor results for asynchronous transmissions. At the contrary, LMS-based receivers, which could also be used for standard direct-sequence spread-spectrum systems, present the best practical performance. In particular, the performances obtained for asynchronous transmissions remain close to those obtained for synchronous transmissions.
机译:本文解决了基于混沌通信的多址系统的多用户检测问题。特别地,人们考虑了差分混沌移位键控(DCSK)调制。考虑了两种传输:同步传输和异步传输,同步传输是在接收器处对齐位元周期。针对两种传输方式研究了不同的检测器:(ⅰ)最佳接收机,它最小化了最小二乘准则;该检测器需要了解许多用户特征; (ⅱ)一种自适应LMS检测器,它可以收敛到先前的检测器,而无需任何有关混沌序列的先验知识;这样,该检测器便更适合实际应用; (ⅲ)基于混沌序列估计的检测器。对于所有这些检测器都得出了理论性能结果。报告了仿真结果,这证实了理论分析,并允许人们比较所提出的探测器。这些结果表明,基于混沌序列估计(CSE)的检测器仅适用于同步传输,而对于异步传输则给出较差的结果。相反,基于LMS的接收机也可以用于标准的直接序列扩频系统,具有最佳的实际性能。特别地,为异步传输获得的性能保持与为同步传输获得的性能接近。

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