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CAD Modeling of a Microwave Rectangular Coaxial Filtering Device

机译:微波矩形同轴滤波装置的CAD建模

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In this paper we discuss the adequate filter parameter selection to obtain a low loss coaxial cable, out of which a narrowband filtering device is designed. The design parameters under interest are the attenuation constant (a) obtained, which will depend on the size of the rectangular coaxial cross section used. And the decision beyond which frequency higher order modes should start to propagate through the cable resulting in a dispersive coaxial cable. The tradeoff between these two parameters is discussed in detail. After the coaxial design parameters are chosen to meet a design specification, (in this paper a 4 pole, 4% fractional bandwidth filter, centered at 9 GHz), the design of an air filled coaxial feed line is discussed, followed by the design of the microwave filter, and finally the integration of the complete device is presented. The coaxial cable discussed in this paper uses air as the propagation medium, thus resulting in a conductor loss limited structure, where no dielectric or radiation losses are present. All calculations were done using Ansoft HFSS a commercial full wave 3D EM simulator
机译:在本文中,我们讨论了足够的滤波器参数选择来获得低损耗同轴电缆,其中设计了窄带滤波装置。利息下的设计参数是获得的衰减常数(a),这将取决于所使用的矩形同轴横截面的尺寸。并且,频率高阶模式应该开始通过电缆传播的决定,从而产生分散同轴电缆。详细讨论这两个参数之间的权衡。选择同轴设计参数以满足设计规范之后,(本文在4杆,以9 GHz为中心的4%分数带宽过滤器),讨论了空气填充同轴馈线的设计,然后设计微波滤波器,最后提出了完整设备的集成。本文讨论的同轴电缆使用空气作为传播介质,从而导致导体损耗有限的结构,其中没有存在电介质或辐射损失。所有计算都使用ANSoft HFSS进行商业全波3D EM模拟器完成

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