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Theoretical Analysis of BER Performance of Optical ZCZ-CDMA System With Smallest Zero Correlation Zone Using Optical Correlator

机译:光学相关器具有最小零相关区的光学ZCZ-CDMA系统的理论分析

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In this paper, we analyze the bit error rate (BER) performance of optical code division multiple access (CDMA) system based on the optical zero-correlation zone (ZCZ) code using the optical correlator which is called optical ZCZ-CDMA system, over the optical fiber and space by theoretical formula. In the optical fiber transmission of this system, the effect of the avalanche photodiode (APD) noise, thermal noise and co- channel interference are considered. Additionally, the effects of the scintillation and background noise are considered in the optical space transmission of this system. The optical ZCZ code, which is a set of pairs of a binary sequence consisting of 1 or 0 and a biphase sequence consisting of 1 or -1 with zero-correlation zone, may be able to provide optical CDMA communication system suppressed co-channel interference. As a result, the BER performance of optical ZCZ-CDMA system over the optical space go down compared to that over the optical fiber, and this system can't remove completely co-channel interference.
机译:在本文中,我们使用称为光学ZCZ-CDMA系统的光学相关器的光学零相关区(ZCZ)代码分析光学码分多次访问(CDMA)系统的误码率(BER)性能。光纤和空间通过理论公式。在该系统的光纤传输中,考虑雪崩光电二极管(APD)噪声,热噪声和共信道干扰的效果。另外,在该系统的光学空间传输中考虑了闪烁和背景噪声的效果。作为由1或0组成的二进制序列的一组二进制序列的光学ZCZ代码可以提供光学CDMA通信系统抑制的同信道干扰来提供光学CDMA通信系统。结果,与光纤相比,光学空间上的光学ZCZ-CDMA系统的BER性能下降,并且该系统不能完全除去完全的共信道干扰。

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