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On Bit Error Probabilities of SSMA Communication Systems Using Spreading Sequences of Markov Chains

机译:基于马尔可夫链扩展序列的SSMA通信系统的误码概率研究

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摘要

We study asynchronous SSMA communication systems using binary spreading sequences of Markov chains and prove the CLT (central limit theorem) for the empirical distribution of the normalized MAI (multiple-access interference). We also prove that the distribution of the normalized MAI for asynchronous systems can never be Gaussian if chains are irreducible and aperiodic. Based on these results, we propose novel theoretical evaluations of bit error probabilities in such systems based on the CLT and compare these and conventional theoretical estimations based on the SGA (standard Gaussian approximation) with experimental results. Consequently we confirm that the proposed theoretical evaluations based on the CLT agree with the experimental results better than the theoretical evaluations based on the SGA. Accordingly, using the theoretical evaluations based on the CLT, we give the optimum spreading sequences of Markov chains in terms of bit error probabilities.
机译:我们研究了使用马尔可夫链的二进制扩展序列的异步SSMA通信系统,并证明了归一化MAI(多址干扰)的经验分布的CLT(中心极限定理)。我们还证明了,如果链是不可约和非周期性的,则异步系统的归一化 MAI 的分布永远不会是高斯的。基于这些结果,我们提出了基于CLT的此类系统中误码概率的新理论评估,并将这些评估与基于SGA(标准高斯近似)的传统理论估计与实验结果进行了比较。因此,我们确认了基于CLT的理论评估比基于SGA的理论评估更符合实验结果。因此,利用基于CLT的理论评估,给出了马尔可夫链在误码概率方面的最佳扩展序列。

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