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首页> 外文期刊>IEEE Transactions on Communications >Performance analysis of an asymptotically quantum-limited optical DPSK receiver
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Performance analysis of an asymptotically quantum-limited optical DPSK receiver

机译:渐近量子限制的光DPSK接收机的性能分析

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摘要

An optical, direct-detection differential phase-shift keying (DPSK) receiver whose error probability is quantum-limited as the transmitting laser linewidth vanishes is analyzed. The receiver design is based on a binary equiprobable hypothesis test with doubly stochastic point process observations, the conditional random rates of which depend on the transmitting laser phase noise, which is modeled as a Brownian motion. The receiver structure consists of a simple delay-and-sum optical preprocessor followed by a photoelectric converter and an integrate-and-dump circuit. Upper and lower bounds on the receiver bit error rate are derived by developing bounds on the conditional rates of the point process, and it is shown that the error probability bounds converge to the true value as the transmitting laser linewidth decreases. Bounds on the power penalty are computed for parameters corresponding to existing semiconductor injection lasers, and are seen to be less than the limiting power penalty for the balanced DPSK receiver.
机译:分析了一种光学直接检测差分相移键控(DPSK)接收器,该接收器的误差概率随发射激光线宽的消失而受到量子限制。接收机的设计基于具有双重随机点过程观测值的二进制等概率假设检验,其条件随机率取决于发射激光相位噪声,该噪声被建模为布朗运动。接收器结构由一个简单的延迟与求和光学预处理器,一个光电转换器和一个积分与转储电路组成。接收器误码率的上限和下限是通过对点过程的条件率进行限制而得出的,表明随着传输激光线宽的减小,误码率的概率边界会收敛到真实值。针对对应于现有半导体注入激光器的参数计算功率损失的界限,并且被认为小于平衡DPSK接收器的极限功率损失。

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