Theoretical analysis of BER performance of OCDMA system using compact matched filter bank for an optical ZCZ sequence set

Takahiro Matsumoto, H. Torii, Y. Ida, S. Matsufuji
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Abstract

The optical zero-correlation zone (ZCZ) sequence set is a set of pairs of binary and bi-phase sequences with a zero-correlation zone, and can provide optical code division multiple access (OCDMA) systems without cochannel interference. We have proposed the construction of a compact-type matched filter bank for this sequence set. However, the OCDMA system using this filter bank might have reduced bit error rate (BER) performance because the input-output characteristics of this filter bank for this sequence set with the zero-correlation zone 4z — 2, z = 1, 2, … are nonlinear. In this paper, we clarify that the BER performance of the OCDMA system using a compact-type matched filter bank is not influenced by the nonlinear characteristics of this filter bank, using the theoretical formula of BER characteristics and computer simulation.
利用紧凑匹配滤波器组对光学ZCZ序列集进行OCDMA系统误码率性能的理论分析
光零相关带(ZCZ)序列集是一组具有零相关带的二进制和双相序列对,可以提供无共信道干扰的光码分多址(OCDMA)系统。针对该序列集,我们提出了一个紧凑型匹配滤波器组的构造。然而,使用该滤波器组的OCDMA系统可能会降低误码率(BER)性能,因为该滤波器组对于具有零相关区4z - 2, z = 1,2,…的序列集的输入-输出特性是非线性的。本文利用误码率特性的理论公式和计算机仿真,阐明了采用紧凑型匹配滤波器组的OCDMA系统的误码率性能不受该滤波器组非线性特性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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