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Reduction of leakage effect with circulator-free fiber-gratings codec array in OCDMA network

机译:OCDMA网络中使用无循环器的光纤光栅编解码器阵列减少泄漏影响

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摘要

The spectral-amplitude-coding (SAC) optical code-division multiple-access (OCDMA) systems use transmissive-mode fiber-Bragg gratings (FBG) instead of reflective-mode to avoid chip-timing. However, practical FBGs have non-ideal reflection coefficients to produce leakage effect and high phase-induced intensity noise (PUN). This study is to cascade more of the same-frequency non-ideal FBGs to approach an ideal squared perfect spectrum for highly reliable network coding. A simple experiment is demonstrated to verify the square-like approach. Moreover, a residual-spectra eliminator (RSE) between FBG encoder and decoder is taken to remove non-coding part of the transmissive spectra for the suppression of PUN in the receiver photo-detectors. Evaluation results show that the combination of RSE with cascaded FBGs can significantly improve the leakage and the PUN effects for the SAC-OCDMA network.
机译:频谱幅度编码(SAC)光码分多址(OCDMA)系统使用透射模式的光纤布拉格光栅(FBG)而不是反射模式来避免芯片计时。但是,实际的FBG具有非理想的反射系数,以产生泄漏效应和高相位感应强度噪声(PUN)。这项研究旨在级联更多相同频率的非理想FBG,以逼近理想平方完美频谱,从而实现高度可靠的网络编码。演示了一个简单的实验来验证类似正方形的方法。此外,在FBG编码器和解码器之间采用残留光谱消除器(RSE)来去除透射光谱的非编码部分,以抑制接收器光电探测器中的PUN。评估结果表明,RSE与级联FBG的组合可以显着改善SAC-OCDMA网络的泄漏和PUN效果。

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