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Performance Analysis of SSMA Communication Systems With Spreading Sequences of Markov Chains: Large Deviations Principle Versus the Central Limit Theorem

机译:具有马尔可夫链扩展序列的SSMA通信系统的性能分析:大偏差原理与中心极限定理

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摘要

In this paper, we consider asynchronous spread spectrum multiple access (SSMA) communication systems with spreading sequences of Markov chains. We show that, given phase shifts and time delays, the empirical mean of the multiple access interference (MAI) for such systems satisfies the conditional large deviations principle (LDP) with the convex, good rate function. By refinement of the large deviations analysis, we also obtain exact asymptotics of bit-error probabilities in such systems. Comparing theoretical expressions of bit-error probabilities with experimental results, we confirm that for too small numbers of users compared to the lengths of spreading sequences, the central limit asymptotics become invalid, but the large deviations asymptotics turn out to be relevant.
机译:在本文中,我们考虑具有马尔可夫链扩展序列的异步扩频多址(SSMA)通信系统。我们表明,在给定相移和时间延迟的情况下,此类系统的多址干扰(MAI)的经验均值满足具有凸的良好速率函数的条件大偏差原理(LDP)。通过改进大偏差分析,我们还获得了此类系统中误码概率的精确渐近性。将误码概率的理论表达式与实验结果进行比较,我们确认,与扩频序列的长度相比,对于数量太少的用户,中央极限渐近变得无效,但是较大的渐近渐近却是相关的。

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