使用调谐金属插入和侵略性空间映射的v波段窄带滤波器的响应校正

A. Berenguer, M. Baquero-Escudero, D. Sánchez-Escuderos, B. Bernardo-Clemente, V. E. Boria-Esbert
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引用次数: 2

摘要

本文描述了一种纠正制造偏差的方法,这种偏差通常在毫米波频率下是临界的。设计了一种以60 GHz为中心的5极窄带滤波器,该滤波器采用槽隙波导(GGW)腔谐振器与感应窗耦合。在提出的设计中,方形调谐金属插入包括在每个腔,耦合窗口和输入输出端口。该策略允许设计通过使用侵略性空间映射(ASM)的优化程序进行调整,全波模拟作为粗模型,制件作为细模型。由于GGW是一种无接触的两片式波导,并且插入片具有简单的制造过程和重新定位,因此通过少量低成本迭代可以最终恢复所需的响应。在这种情况下,通过一次迭代得到了一个中心响应,该响应只有1.5 dB的插入损耗和良好的通带回波损耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response correction of a V-band narrow-band filter using tuning metal insertions and Aggressive Space Mapping
This paper describes a procedure to correct manufacturing deviations, usually critical at mm-wave frequencies. A 5-pole narrow-band filter centered at 60 GHz is designed using Groove Gap Waveguide (GGW) cavity resonators coupled by inductive windows. In the presented design, square-shaped tuning metal insertions are included in each cavity, coupling windows, and input-output ports. This strategy allows the design to be tuned by an optimization procedure using Aggressive Space Mapping (ASM) with full-wave simulation as coarse model, and the manufactured piece as the fine model. Since the GGW is a contact-less two-piece waveguide, and the piece with the insertions has a simple manufacturing process and reposition, by few low-cost iterations the desired response can be finally recovered. In the presented case, with one iteration it is obtained a centered response, which exhibits only 1.5 dB of insertion loss and good return loss in the pass band.
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