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Microstrip bandpass filter design using split-path method and optimized curvature corrections

机译:微带带通滤波器设计使用分流路径方法和优化的曲率校正

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摘要

Bandpass filters with wide pass-band are an essential requirement in various equipments of satellite and defence communication sectors. Here a method of split-path interactions is proposed to approximately predict the resonant frequency and topology of bandpass filters which otherwise fall under the category of heuristic designs. Curved transmission lines are often required to make filter structures physically compact; however, curvature effects create errors in the theoretical (design) prediction of resonant or central frequencies for bandpass filter design. Earlier propositions on curvature corrections had been considerably precise, but recent design standards demand even higher accuracies. The prime feature of this work is the use of a meta-heuristic optimization (i.e. Particle Swarm Optimization) technique in curvature corrections for the first time which brings accuracies of over 99% in the corrected results. The split paths used in this design are suitably curved, with the proposed optimized curvature correction technique, so as to attain a compact size of the filter. The resulting filter has a low insertion loss of around -1.00dB and a sharp stopband cut-off. Fabrication was done on a FR4 microstrip substrate with a good agreement between measured and simulated results. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:带宽通带的带通滤波器是卫星和防御通信部门各种设备的基本要求。这里提出了一种分裂路径交互的方法,以预测带通滤波器的谐振频率和拓扑,否则在启发式设计的类别下。通常需要弯曲传输线来使过滤器结构物理紧凑;然而,曲率效应在带通滤波器设计的谐振或中心频率的理论(设计)预测中产生误差。早期对曲率校正的命题具有很大的精确性,但最近的设计标准需要更高的准确性。这项工作的主要特征是在曲率校正中使用元启发式优化(即粒子群优化)技术,这是第一次在校正的结果中带来超过99%的精度。在该设计中使用的分割路径适当地弯曲,提出的优化曲率校正技术,以获得滤波器的紧凑尺寸。所得到的滤波器具有左右-1.00dB的低插入损耗和尖锐的阻带截止。在FR4微带基板上进行制造,在测量和模拟结果之间具有良好的一致性。版权所有(c)2015 John Wiley&Sons,Ltd。

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