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Design Procedure for New Compact Waffle-Iron Filters With Transmission Zeros

机译:具有传输零点的新型紧凑型华夫铁过滤器的设计程序

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In this paper, a novel waffle-iron filter with transmission zeros at multiple frequencies, along with its design procedure, is presented. The proposed filter features a high-power behavior and a wide rejected band in a single compact structure by means of a set of transmission zeros that can also be placed close to the passband. Its design method rests on a divide-and-rule strategy, where the physical dimensions of the constituent design entities can be easily computed in a very short time. A novel high-power compact waffle-iron filter with transmission zeros at multiple frequencies has been designed as well as several classical waffle-iron filters with transmission zeros at one frequency only, using a detailed step-by-step procedure which avoids the brute-force optimizations needed until now. Multipactor and corona simulations have been conducted proving a high-power handling capability of 1.8 kW and 78.6 W, respectively. A prototype of the novel filter has been fabricated, obtaining a remarkable accordance between the simulated and measured results.
机译:本文提出了一种新型的华夫铁滤波器,该滤波器在多个频率上具有零透射率,并给出了其设计过程。所提出的滤波器通过单个也可以放置在通带附近的传输零点,在单个紧凑的结构中具有高功率特性和宽禁带特性。它的设计方法基于分而治之的策略,在该策略中,可以在很短的时间内轻松计算出组成设计实体的物理尺寸。设计了一种新颖的大功率紧凑型华夫铁滤波器,在多个频率上具有零透射率,并且设计了几种经典的华夫铁滤波器,它们仅在一个频率处具有零透射率,并且采用了详细的分步过程,避免了蛮力。到目前为止需要强制优化。已经进行了Multipactor和电晕模拟,证明分别具有1.8 kW和78.6 W的高功率处理能力。新型滤波器的原型已经制造出来,在仿真结果和测量结果之间取得了显着的一致性。

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