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Optimal code set selection in m-sequence spectral phase-encoded time spreading (SPECTS) OCDMA systems

机译:在M序列谱相位编码时间扩展(SPECT)OCDMA系统中的最优码集选择

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In this paper, we perform a comprehensive analysis of a SPECTS-OCDMA system based on m-sequence codes aiming at finding optimal code-sets that produce minimum BER among all codes for a specific number of simultaneous users. We prove that each code interferes differently with other codes of the same family making each user to achieve a different performance in terms of bit error rate (BER) value. This procedure is crucial to improve overall system performance since only a small fraction of the available code-sets actually performs error-free (BER <10~(-12)). We have found only 7 code-sets out of 31465 possible combinations (0.022%) for w-sequence 31 with 4 simultaneous users. Such analysis is crucial for SPECTS-OCDMA systems because it was always assumed that all codes of the same family have the same performance.
机译:在本文中,我们对基于M-SERION码的SPECTS-OCDMA系统进行了全面的分析,其旨在查找为特定数量的同时用户的所有代码中产生最小的BER的最佳代码集。我们证明了每个代码与同一系列的其他代码不同,使每个用户在误码率(BER)值方面实现不同的性能。此过程对于提高整体系统性能至关重要,因为只有一小部分可用的代码集实际执行无差错(BER <10〜(-12))。我们只发现了31465个可能的组合(0.022%)的7个代码,用于W-Sequence 31,具有4个同步用户。这种分析对于SPECTS-OCDMA系统至关重要,因为它始终假设同一系列的所有代码具有相同的性能。

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