EM based design of large-scale dielectric resonator multiplexers by space mapping

M. Ismail, D. Smith, A. Panariello, Y. Wang, M. Yu
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引用次数: 10

Abstract

A novel design methodology for multiplexer design is presented. For the first time, finite element EM based simulators and space-mapping optimization are combined to produce an accurate design for manifold coupled output multiplexers with dielectric resonator (DR) loaded filters. Finite element EM based simulators are used as a fine model of each multiplexer channel and a coupling matrix representation is used as a coarse model. Fine details such as tuning screws are included in the fine model. Therefore channel dispersion and spurious modes are taken into account. The DR filter channel design parameters are kept bounded during optimization. Our approach has been used to design large-scale manifold coupled output multiplexers and it has significantly reduced the overall tuning time compared to traditional techniques. The technique is illustrated through design of a 10-channel output multiplexer with 5-pole DR filter based channels.
基于空间映射的大型介电谐振多路复用器的电磁设计
提出了一种新的多路复用器设计方法。本文首次将有限元仿真与空间映射优化相结合,对介质谐振器(DR)负载滤波器的流形耦合输出多路复用器进行了精确设计。采用有限元仿真器作为各多路复用器信道的精细模型,采用耦合矩阵表示作为粗模型。精细的细节,如调谐螺丝,包括在精细模型。因此考虑了信道色散和杂散模式。在优化过程中,DR滤波器通道设计参数保持有界。我们的方法已用于设计大型流形耦合输出多路复用器,与传统技术相比,它大大减少了整体调谐时间。通过设计一个基于5极DR滤波器的10通道输出多路复用器来说明该技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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