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OPTIMUM MULTILEVEL CHAOTIC SEQUENCES FOR ASYNCHRONOUS DS-CDMA SYSTEMS OVER RICIAN SELECTIVE FADING CHANNEL

机译:瑞典选择性衰落通道的异步DS-CDMA系统的最佳多级混沌序列

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The BER performances of asynchronous DS-CDMA systems using conventional matched-filter receiver and multilevel chaotic spreading are estimated over a Rician fading selective channel. The paper completes the results of previous works dedicated to the optimization of system's BER performances by controlling the chaotic sequence generator. It is showed that a family of PWAM (Piece-Wise Affine Markov) maps named (n, t) - tailed shifts can generate sequences that optimize the performances of the DS-CDMA system under different load and channel fading conditions. Even though these works considered the multilevel quantization for the system performance analysis, the optimum case was identified only for the binary sequences, stating that the multilevel sequences offer no improvement over the classical sequences. The present paper shows that in the case of (n, t) - tailed shifts sequences the optimum performances are reached not only for a binary quantization, but for any number of quantizing levels.
机译:使用常规的匹配滤波器接收机和多级混沌扩频异步DS-CDMA系统的BER性能进行估计在莱斯衰落选择性信道。本文完成了由控制混沌序列发生器致力于系统的误码率性能优化以前的作品的结果。据表明,PWAM(分段仿射马尔可夫)的一个家族命名映射(N,T) - 尾位移可以生成优化不同负荷和信道衰落条件下的DS-CDMA系统的性能序列。尽管这些作品被认为是多级量化的系统性能分析,最佳的情况下,被确定为唯一的二进制序列,说明该多级序列享有经典的序列没有改善。本文件显示,在的情况下(N,T) - 最佳性能均达到不仅对二进制量化,但用于任何数目的量化水平的尾移位序列。

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