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Chaos-based asynchronous DS-CDMA systems and enhanced Rake receivers: measuring the improvements

机译:基于混沌的异步DS-CDMA系统和增强型Rake接收机:衡量改进

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Results of recent theoretical investigations highlighted that the use of chaos in direct-sequence code-division multiple access (DS-CDMA) systems may lead to nonnegligible improvements in communication quality for several scenarios. We here briefly review the main steps in this derivation and report the experimental verifications of the corresponding theoretical prediction. With this, we confirm that chaos-based spreading sequences outperform classical pseudo-random sequences in at least two important cases. Over nonselective channels, the ability of chaos-based spreading of minimizing multiple-access interference leads to a measured 60% improvement in Perr with respect to classical spreading. Over selective channels, the possibility of jointly optimizing chaos-based spreading and Rake receiver profiles leads to improvements of up to 38% in Perr with respect to systems with either conventional spreading or conventional Rake policies.
机译:最近的理论研究结果突出表明,在直接序列码分多址(DS-CDMA)系统中使用混沌可能会导致在某些情况下通信质量的不可忽略的改善。在这里,我们简要回顾了此推导中的主要步骤,并报告了相应理论预测的实验验证。由此,我们确认了在至少两种重要情况下,基于混沌的扩展序列优于经典的伪随机序列。在非选择性信道上,基于混沌的扩频能够最大程度地减少多址干扰,相对于传统扩频,Perr的测量值提高了60%。在选择性信道上,联合优化基于混沌的扩频和Rake接收机配置文件的可能性,相对于具有常规扩频或常规Rake策略的系统,Perr最多可提高38%。

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