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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Phase and Polarization Diversity for Minimum MAI in OCDMA Networks
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Phase and Polarization Diversity for Minimum MAI in OCDMA Networks

机译:OCDMA网络中最小MAI的相位和极化分集

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摘要

A novel coherent optical code-division multiple-access (OCDMA) network based on spectral phase coding and on phase and polarization diversity balanced reception is proposed. A rigorous model of the network is developed, which shows that spectral efficiencies of 1 bps/Hz and beyond can be achieved by minimizing multiple-access interference (MAI) and by canceling beat noise. While the system achieves full capacity under bit synchronism, it also offers competitive performance at up to 25% of full capacity, even when completely asynchronous. Tree and ring network configurations assure synchronization, making the proposed system robust in the presence of dispersion and phase noise.
机译:提出了一种基于频谱相位编码以及相位和极化分集平衡接收的新型相干光码分多址(OCDMA)网络。建立了严格的网络模型,该模型表明可以通过最小化多址干扰(MAI)并消除拍频噪声来实现1 bps / Hz甚至更高的频谱效率。尽管该系统在位同步下达到了满容量,但即使完全异步,它也可以提供高达满容量25%的竞争性能。树形和环形网络配置可确保同步,从而使所提出的系统在存在色散和相位噪声的情况下具有鲁棒性。

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