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Theoretical Studies of Ultrashort Light Pulse Spectrally-Phase-Encoded OCDMA System Using Power-Cubic Optical Nonlinear Preprocessor

机译:基于功率三次光学非线性预处理器的超短光脉冲频谱编码OCDMA系统的理论研究

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摘要

In this paper, a spectral-phase-encoded ultrashort light pulse optical code division multiple access (SPE-OCDMA) system employing a novel nonlinear power-cubic optical preprocessor at its receiver's front end is theoretically investigated. The system's mathematical model and the statistical distribution of the decision variable , prior to the decision module of the receiver, are discussed. The first three moments of the random decision variable are obtained in the context of the above OCDMA system and subsequently used in an appropriate Log-Pearson type 3 (LP3) distribution to represent the random decision variable . Multiple access interference (MAI) and amplified spontaneous emission (ASE) noises are taken into account to obtain the bit error rate of the system. Furthermore, the effects of shot and thermal noises are also included in the system performance modeling. In this context, performance comparison of the system based on power-cubic preprocessor and systems employing power-quadratic nonlinear optical thresholders, such as second harmonic generation crystals, are discussed. Finally, through numerical calculations under various conditions, we show the superiority of power-cubic systems, especially in high power regime where MAI is the dominant noise.
机译:本文研究了一种在接收器前端使用新型非线性功率三次光学预处理器的频谱相位编码超短光脉冲光码分多址(SPE-OCDMA)系统。在接收器的决策模块之前,讨论了系统的数学模型和决策变量的统计分布。随机决策变量的前三个时刻是在上述OCDMA系统的上下文中获得的,随后在适当的Log-Pearson类型3(LP3)分布中使用以表示随机决策变量。考虑了多路访问干扰(MAI)和放大的自发发射(ASE)噪声,以获得系统的误码率。此外,散粒和热噪声的影响也包括在系统性能建模中。在这种情况下,讨论了基于功率三次方预处理器的系统与采用功率二次非线性光学阈值器的系统(如二次谐波生成晶体)的性能比较。最后,通过在各种条件下的数值计算,我们显示了三次幂系统的优越性,特别是在MAI是主要噪声的大功率状态下。

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