首页> 外文会议>Electrotechnical Conference, 1996. MELECON '96., 8th Mediterranean >Experimental and theoretical study of intrinsic and clipping-induced distortions in CATV DFB laser diodes
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Experimental and theoretical study of intrinsic and clipping-induced distortions in CATV DFB laser diodes

机译:CATV DFB激光二极管内在和削波引起的畸变的实验和理论研究

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Calculation of distortion performances of a given distributed feedback (DFB) laser for different frequency plans is a well-known problem when working with CATV AM-VSB optical links. One generally takes safety margins or perform measurements on the lasers with the requested frequency plans when it is possible. After investigating the most important theories proposed in the scientific literature, we have come to the conclusion that laser distortion can be described as the weighted contribution of two different distortion sources: leakage current and intrinsic distortion due to the laser oscillation mechanism itself. On the basis of the two preceding ideas we predict the evolution of the second-order two-tone intermodulation (IMD2) response as a function of frequency and operating point by cascading Volterra models of the laser leakage current and rate equations. The total composite second order (CSO) distortion can then be predicted with a "10.log" adding law and compared to distortion measurements, including clipping effects.
机译:在使用CATV AM-VSB光学链路时,针对不同频率计划的给定分布式反馈(DFB)激光器的失真性能的计算是一个众所周知的问题。通常,如果可能的话,通常会采取安全裕度或以要求的频率计划对激光器进行测量。在研究了科学文献中提出的最重要的理论之后,我们得出的结论是,激光畸变可以描述为两种不同畸变源的加权贡献:泄漏电流和归因于激光振荡机制本身的固有畸变。基于上述两个思想,我们通过级联激光泄漏电流和速率方程的Volterra模型,预测了二阶双音互调(IMD2)响应随频率和工作点的变化。然后可以使用“ 10.log”相加法则预测总的复合二阶(CSO)失真,并将其与失真测量(包括削波效果)进行比较。

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