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Multi-user receivers for a multiple-access system based on chaotic sequences on unknown asynchronous frequency-selective channels

机译:基于未知异步频率选择信道上的混沌序列的多址系统的多用户接收机

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This article deals with the problem of multi-user detection for a chaos-based multiple-access system, using a Differential Chaos Shift Keying (DCSK) modulation. The transmission channels are frequency-selective (multipath), and the channel characteristics (gains and delays) are unknown at the receiver side. It is only assumed that estimates of the minimum and maximum delays are available, only for the channel corresponding to the user of interest. Under such assumptions, a least-mean-square detector is derived, whose theoretical performances are provided. This detector is compared with the detector obtained when the delays are known, and with the LMMSE detector, for which all system parameters are available. The theoretical analysis is confirmed by the simulation results, which show that the LMS detector is not dramatically degraded with respect to the LMMSE detector, and that it is quite robust with respect to poor accuracy of the delay estimation.
机译:本文解决了使用差分混沌移位键控(DCSK)调制的基于混沌的多址系统的多用户检测问题。传输通道是频率选择的(多径),并且在接收器端未知通道特性(增益和延迟)。仅假定最小和最大延迟的估计仅对于对应于感兴趣用户的信道可用。在这样的假设下,推导了最小均方检波器,提供了其理论性能。将该检测器与已知延迟的情况下获得的检测器以及LMMSE检测器(所有系统参数均可用)进行比较。仿真结果证实了理论分析,仿真结果表明,相对于LMMSE检测器,LMS检测器的性能没有显着降低,并且对于延迟估计的准确性较差,它还是很健壮的。

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