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Recursive simulation models of the semiconductor laser modulation characteristics for accurate performance evaluation of coherent optical CPFSK systems

机译:半导体激光调制特性的递归仿真模型,用于相干光学CPFSK系统的准确性能评估

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摘要

Modeling of the semiconductor laser nonuniform FM response and residual IM modulation is essential for the computer-aided design of coherent optical communication systems. This paper presents an accurate simulation model, in which the FM and IM responses are represented by recursive digital filters derived directly from measurements. A comparison with previous models of the bibliography reveals the advantages of the current approach. The proposed modeling procedure is applied in the case of a single-electrode DFB laser. This DFB model, in combination with a semi-analytical technique for the evaluation of the error probability, is used to study the influence of the modulation characteristics on the performance of a coherent heterodyne CPFSK system with differential receiver operating at 1 Gb/s. Theoretical and experimental results are in excellent agreement.
机译:半导体激光器非均匀FM响应和残余IM调制的建模对于相干光通信系统的计算机辅助设计至关重要。本文提出了一个精确的仿真模型,其中FM和IM响应由直接从测量得出的递归数字滤波器表示。与参考书目的先前模型进行比较可以发现当前方法的优势。所建议的建模过程适用于单电极DFB激光器。该DFB模型与半分析技术相结合,用于评估错误概率,用于研究调制特性对以1 Gb / s工作的差分接收器的相干外差CPFSK系统性能的影响。理论和实验结果非常吻合。

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