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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Optimum design and performance evaluation of an all-fiber add-drop multiplexer based on a grating coupler
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Optimum design and performance evaluation of an all-fiber add-drop multiplexer based on a grating coupler

机译:基于光栅耦合器的全光纤插分复用器的优化设计和性能评估

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摘要

The optimum design and performance evaluation of an add-drop multiplexer (ADM) based on a grating coupler is presented. The equations describing its behavior are numerically solved and surface plots where the relevant ADM transfer functions are plotted against two physical parameters of importance are introduced as an useful tool to evaluate the tradeoffs involved in the optimum design of the structure. The merits of the ADM designed using the above criteria are evaluated under realistic operation conditions by means of computer simulation using laser rate equations, pseudorandom modulation sequences, and eye closure measurements to estimate the crosstalk penalty in both the drop and add operations. It is found that, whereas a Blackman apodization gives optimum results in terms of crosstalk only when the drop operation is considered, a Hamming apodization yields an overall superior performance when both add and drop functions are considered.
机译:提出了基于光栅耦合器的分插复用器(ADM)的最佳设计和性能评估。对描述其行为的方程进行了数值求解,并引入了针对两个重要的物理参数绘制相关ADM传递函数的曲面图,作为评估结构最佳设计中的折衷方法的有用工具。根据上述标准设计的ADM的优点,是在实际操作条件下,通过计算机模拟使用激光速率方程,伪随机调制序列和眼图闭合测量来评估在下降和相加操作中的串扰损失时进行评估的。已经发现,尽管仅当考虑到下降操作时布莱克曼切趾法就串扰而言提供最佳结果,但是当同时考虑添加和下降功能时,汉明切趾法产生总体上优越的性能。

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