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Performance analysis of single-user and multiuser detectors for optical code division multiple access communication systems

机译:光码分多址通信系统的单用户和多用户检测器的性能分析

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摘要

Code division multiple access (CDMA) is a powerful multiplexing scheme, particularly suited to the optical domain with its broad spectrum. Unfortunately, analysis of optical CDMA (OCDMA) systems has been almost exclusively restricted to systems employing a correlation detector, which suffer high degradation when received user powers are dissimilar. This study examines the performance of an optimum single-user detector and two multiuser detectors for OCDMA in the presence of additive light intensity noise and Poisson detection. The optimized single-user detector is the maximum likelihood detector given the interference from other users is a random process with known distribution. One multiuser detector is based on a local search algorithm for maximizing the likelihood function. The second multiuser detector is a generalization of the optical multistage detector to accept soft-decision from the previous stage. Approximations to the error probabilities of the OCDMA system based on either random signature sequences or deterministic codes are derived for each detector using a large deviations theory approach. The asymptotic multiuser efficiency is found to be related to the large deviations rate function. The analysis shows that the correlation detector performance decreases rapidly as the number of users increases, while the optimized single-user detector and the two multiuser detectors proposed perform considerably better and show less sensitivity to unequal received user powers.
机译:码分多址(CDMA)是一种功能强大的复用方案,尤其适用于具有广谱的光域。不幸的是,光CDMA(OCDMA)系统的分析几乎只限于使用相关检测器的系统,当接收到的用户功率不相同时,它们会遭受很大的劣化。这项研究检查了在存在加性光强度噪声和泊松检测的情况下,用于OCDMA的最佳单用户检测器和两个多用户检测器的性能。考虑到来自其他用户的干扰是具有已知分布的随机过程,因此优化的单用户检测器是最大似然检测器。一个多用户检测器基于用于最大化似然函数的局部搜索算法。第二个多用户检测器是光学多级检测器的概括,可以接受前一级的软判决。使用大偏差理论方法,为每个检测器得出基于随机签名序列或确定性代码的OCDMA系统错误概率的近似值。发现渐近多用户效率与大偏差率函数有关。分析表明,随着用户数量的增加,相关检测器的性能迅速下降,而提出的优化的单用户检测器和两个建议的多用户检测器的性能要好得多,并且对不平等的接收用户功率表现出较小的敏感性。

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