一种基于环形谐振器和DSP方法的多频带滤波器设计

M. Mokhtari, G. Rostami, M. Dolatyari, A. Rostami
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引用次数: 0

摘要

本文提出了一种基于环形谐振腔的新型滤光器,该滤光器采用准结构(如Thue-Morse序列)作为半径图,具有出色的多窄带响应性能。这种能力使这种设计方法成为新兴的密集波分复用网络滤波器设计的有效方法。设计过程结合了传递矩阵法分析和强大的离散信号处理技术。给出了在z域中分析基本光学构建块的充分概述,该程序发展到分析由数学序列施加的任何光学结构。讨论了采用极点-零点图、离散时间信号处理方法及消歧技术的方案。离散时间信号处理方法的要点是,主要光学参数对操作的影响是通过零极位置澄清。像极数,带宽,和止动带的位置等特征可以使用环直径比来控制。最后,对耦合系数进行apoization,得到了一个FWHM为0.3 nm的滤波器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel multiband filter design based on ring resonators and DSP approach
This paper proposes a novel ring resonator based optical filter that has an outstanding multi narrow band response due to adopting quasi structures such as Thue-Morse sequence as the radius-pattern. This capability introduces this design approach as an effective method for the design of filters for emerging dense wavelength division multiplexing networks. The design process incorporates analysing through the transfer matrix method and the powerful discrete-time signal processing techniques. Giving an adequate overview of analysing basic optical building blocks in the Z-domain, the procedure develops to analysing any optical structure imposed by mathematical sequences. The proposal is discussed employing pole-zero diagrams, discrete-time signal processing approach including apodization techniques. The point of the discrete-time signal processing approach is that the effect of dominant optical parameters over operation is clarified through the pole-zero position. Features like number of poles, bandwidth, and position of stop-bands can be controlled using ring diameter ratio. Finally, apodization of coupling coefficients attains a filter with an FWHM of 0.3 nm.
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