Discontinuity modeling and stepped optimization technique based design of wideband contiguous millimeter-Wave Diplexer for EW application

Manish Mendhe, Y. Hemalatha, N. Ramesh, Srihari Merugu
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Abstract

This paper describes the detailed design steps of wideband contiguous Diplexer using Suspended Strip line Substrate (SSS) covering the frequency range of 18–40 GHz. Good input match, low insertion loss, smooth & narrow overlap region with good selectivity and performance repeatability are major requirement for achieving high performance wide-open millimeter Wave (mmW) multiplexers. However the above requirements are difficult to achieve simultaneously especially in the mmW region where perfect input match is a primary concern over a wideband region. The design, analysis and optimization using existing Microwave simulation software's with unavailability of accurate linear schematic models and Electro-Magnetic (EM) based models with limited or no optimization feature tightened the challenge further. The step by step discontinuity modeling and optimization approach has been described to obtain the accurate and fast simulation results. The approach has been described and verified practically to achieve cross over loss of less than 4 dB and input output matching with return loss of better than 10 dB in the entire band of 18–40 GHz.
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基于不连续建模和步进优化技术的电子战宽带连续毫米波双工器设计
本文详细介绍了频率范围为18-40 GHz的悬带线衬底(SSS)宽带连续双工器的设计步骤。良好的输入匹配、低插入损耗、平滑窄的重叠区域、良好的选择性和性能可重复性是实现高性能宽开口毫米波(mmW)多路复用器的主要要求。然而,上述要求很难同时实现,特别是在毫米波区域,在宽带区域中,完美的输入匹配是主要关注的问题。利用现有的微波仿真软件进行设计、分析和优化,由于无法获得精确的线性原理图模型,以及基于电磁(EM)的模型有限或没有优化功能,进一步加大了挑战。为了获得准确、快速的仿真结果,提出了逐级建模和优化方法。该方法在18-40 GHz全频段内实现了小于4 dB的交叉损耗和小于10 dB的输入输出匹配。
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