Investigation of Multi-Beam Interference Impact on State-of-Polarization OCDMA Optical Networks

N. Tarhuni
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Abstract

Optical Code Division Multiple Access (OCDMA) is a promising technology for efficiently sharing resource of future optical networks among multiple nodes while managing the unavoidable Multiple Beam Interference (MBI). MBI arises when multiple users share the optical channel concurrently using signature codes. In this work, we investigate the impact of MBI on OCDMA network based on State of Polarization (SOP) encoding. The signature codes rotate the beam SOP for each node attached to the optical network. The considered signature codes are the asynchronous Gold code set and the Synchronous Hadamard code set. It is well known that conventional CDMA systems provide significant processing gain improvement in terms of the required Signal to Noise Ratio SNR, to achieve a given Bit Error Rate (BER) performance for single node transmission. However, the performance deteriorates as more active concurrent nodes transmit on shared channel. Interestingly, we show that the BER performance improves as number of active nodes increases when synchronous Hadamard code set is used as the signature waveform. To the best of our knowledge, this is a novel behavior in OCDMA systems. For instance, it is found that, by using intensive numerical simulations, a Hadamard code set of length 32 chips at a fixed SNR of −4 dB, the BER drops from~~ 10−2 for a single user scenario to ~~ 10−6 for 32 concurrent users, i.e., a four order of magnitude improvement in BER performance.
多波束干扰对偏振态OCDMA光网络影响的研究
光码分多址(OCDMA)是一种很有前途的技术,可以在未来光网络的多个节点之间有效地共享资源,同时管理不可避免的多波束干扰(MBI)。当多个用户使用签名码同时共享光通道时,就会出现MBI。在这项工作中,我们研究了基于偏振状态(SOP)编码的MBI对OCDMA网络的影响。签名码旋转连接到光网络的每个节点的光束SOP。考虑的签名码是异步Gold码集和同步Hadamard码集。众所周知,传统的CDMA系统在单节点传输中,为了达到给定的误码率(BER)性能,在所需的信噪比(SNR)方面提供了显著的处理增益改进。然而,随着越来越多的活动并发节点在共享通道上传输,性能会下降。有趣的是,我们表明,当使用同步Hadamard码集作为签名波形时,随着活动节点数量的增加,误码率性能有所提高。据我们所知,这是OCDMA系统中的一种新行为。例如,通过密集的数值模拟发现,在固定信噪比为- 4 dB的情况下,长度为32个芯片的Hadamard码集的误码率从单用户场景的~~ 10−2下降到32个并发用户场景的~~ 10−6,即误码率性能提高了4个数量级。
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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