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

机译:基于不连续性建模和跨越连续毫米波双工器的阶梯优化技术,用于EW应用

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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.
机译:本文介绍了覆盖18-40GHz频率范围的悬挂条线基板(SSS)的宽带连续双工器的详细设计步骤。具有良好选择性和性能可重复性的良好输入匹配,低插入损耗,平滑和窄重叠区域是实现高性能宽开放式毫米波(MMW)多路复用器的主要要求。然而,上述要求难以同时实现,特别是在完美输入匹配的MMW区域中是宽带区域的主要问题。使用现有的微波仿真软件的设计,分析和优化具有无需准确的线性原理图和基于电磁(EM)的有限或无优化功能的型号,进一步拧紧挑战。已经描述了逐步的不连续建模和优化方法来获得准确和快速的模拟结果。实际上已经描述并验证了该方法,以实现越来越小于4dB的损耗,并在18-40GHz的整个频段中输入输出匹配比10 dB优于10 dB。

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