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Direct Synthesis of Complex Loaded Chebyshev Filters in a Complex Filtering Network

机译:在复杂滤波网络中直接合成复杂负载的切比雪夫滤波器

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摘要

In this paper, a direct synthesis approach is proposed for designing a Chebyshev filter that matches the frequency variant complex loads at both the ports. The approach is based on the power wave renormalization theory and two practical assumptions: 1) the prescribed transmission zeros are stationary and 2) the reflection zeros are located along an imaginary axis. Three conditions are derived to stipulate the characteristic polynomials of the filter's responses through the renormalization of reference load impedances. These conditions are sequentially applied to ensure that the filter is physically realizable and well matched to the complex loads. It has been shown that the optimally synthesized filtering network that consists of an ideal filter cascaded with a piece of transmission line of an optimal length at each port can match the complex loads over a given frequency band with the best effort. By incorporating with an adjustment of the junction parameters, the approach provides an analytical yet flexible way to synthesize advanced microwave circuits composed of multiple filters connected together through some generalized junctions. The effectiveness of the method is demonstrated through three synthesis examples.
机译:该文提出了一种直接合成方法,用于设计一种与两个端口的频率变化复载相匹配的切比雪夫滤波器。该方法基于功率波重整化理论和两个实际假设:1)规定的传输零点是静止的,2)反射零点位于假轴上。推导了三个条件,通过参考负载阻抗的重整化来规定滤波器响应的特征多项式。这些条件是按顺序应用的,以确保滤波器在物理上是可实现的,并且与复杂的负载很好地匹配。研究表明,由理想滤波器组成的最佳合成滤波网络,在每个端口处级联了一段最佳长度的传输线,可以尽最大努力匹配给定频带上的复杂负载。通过结合结点参数的调整,该方法提供了一种分析而灵活的方法,用于合成由多个滤波器组成的高级微波电路,这些滤波器通过一些广义结连接在一起。通过三个合成算例证明了该方法的有效性。

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