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Chaotic complex spreading sequences for asynchronous DS-CDMA. Part II. Some theoretical performance bounds

机译:异步DS-CDMA的混沌复数扩展序列。第二部分一些理论上的性能界限

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For pt.I see G. Mazzini et al., vol.44, pp.937-47 (Oct. 1997). This paper and its companion (Part I) are devoted to the evaluation of the impact of chaos-based techniques on communications systems with asynchronous Code Division Multiple Access. In Part I, a performance index was introduced and exploited to a priori estimate the performance of DS-CDMA communications systems based on chaotic spreading sequences, and to compare it to that of conventional systems. Here, tools from nonlinear dynamical system theory are employed to give a formal ground for those results. Analytical bounds on the expected partial cross correlation between spreading sequences obtained by quantizing and repeating a chaotic time series are derived, ensuring general applicability of such a technique in a real environment. Further analytical arguments guarantee that, when particular chaotic generators are used, expected performance is not worse than that of a well-behaving communications system. This analysis ensures also that, unlike conventional sequences, chaotic spreading codes can be generated for any number of users and allocated bandwidth.
机译:我的观点见G.Mazzini等人,第44卷,第937-47页(1997年10月)。本文及其同伴(第一部分)致力于评估基于混沌的技术对异步码分多址通信系统的影响。在第一部分中,引入了一种性能指标,并利用它来基于混沌扩频序列预先估计DS-CDMA通信系统的性能,并将其与常规系统进行比较。在这里,使用非线性动力学系统理论的工具为这些结果提供正式依据。推导了通过量化和重复混沌时间序列获得的扩展序列之间的预期部分互相关的分析界线,从而确保了这种技术在实际环境中的普遍适用性。进一步的分析论据保证,当使用特定的混沌发生器时,预期性能不会比行为良好的通信系统差。该分析还确保了与常规序列不同,可以为任意数量的用户和分配的带宽生成混沌扩展码。

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