可编程光子集成波导网格传输特性的一般计算

Zhengyong Ji, Juan Zhang
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引用次数: 0

摘要

可编程光子集成波导网格(PPIWM)类似于电子学中的现场可编程门阵列(FPGA),可以通过编程形成多种拓扑结构,灵活地提供不同的功能。在网格结构中,任意输入输出端口之间传输特性的计算是实现其应用的前提。随着PPIWM在规模和结构上的不断发展,通过编程自动高效地计算输入输出端口之间的传输特性变得尤为重要。目前,现有的计算方法较为复杂,不利于编程,并且存在计算效率低的突出问题。本文将网格结构映射为双节点表示的图网络,便于编程计算。在此基础上,通过逐次简化节点,提出了求解网格所需任意输入输出端口之间传递函数的计算方法。该方法可以大大减少求解大型复杂网格结构中传递函数的时间,具有编程简单、效率高的优点。通过具体的网格实例验证了该算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
General calculation of transmission characteristics of programmable photonic integrated waveguide mesh
Programmable photonic integrated waveguide mesh (PPIWM) is similar to field programmable gate array (FPGA) in electronics, which can be programmed to form a variety of topologies to provide different functions flexibly. In mesh structure, the calculation of transmission characteristics between arbitrary input and output ports is the premise to realize its application. With the continuous development of PPIWM in scale and structure, it is particularly important to automatically and efficiently calculate the transmission characteristics between input and output ports by programming. At present, the existing calculation method is complicated, which is not conducive to programming and has the prominent problems of low computational efficiency. In this paper, the mesh structure is mapped to a graph network represented by dual node, which is easy to be calculated programmatically. On this basis, a calculation method for solving the transfer function between arbitrary input and output ports required by the mesh is proposed by successively simplifying the nodes. This method can greatly reduce the time of solving the transfer function in the large and complex mesh structure, and has the advantages of easy programming and high efficiency. A specific example of the mesh is given to verify the effectiveness of the algorithm.
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