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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Automated Design of Common-Mode Suppressed Balanced Wideband Bandpass Filters by Means of Aggressive Space Mapping
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Automated Design of Common-Mode Suppressed Balanced Wideband Bandpass Filters by Means of Aggressive Space Mapping

机译:侵略性空间映射的共模抑制平衡宽带带通滤波器的自动化设计

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The automated and unattended design of balanced microstrip wideband bandpass filters by means of aggressive space mapping (ASM) optimization is reported in this paper. The proposed filters are based on multisection mirrored stepped impedance resonators (SIRs) coupled through quarter-wavelength transmission lines, acting as admittance inverters. Such resonant elements provide transmission zeros useful for the suppression of the common mode in the region of interest (differential filter pass band) and for the improvement of the differential-mode stopband (rejection level and selectivity). Due to the limited functionality of the inverters, related to the wide fractional bandwidths, the automated filter design requires a two-step process. With the first ASM, the filter schematic satisfying the required specifications (optimum filter schematic) is determined. Then, the layout is synthesized by means of a second ASM algorithm. Both algorithms are explained in detail and are applied to the synthesis of two filters, as illustrative (and representative) examples. With this paper, it is demonstrated that the two-step ASM optimization scheme (first providing the optimum schematic and then the layout), previously applied by the authors to wideband single-ended filters, can be extended (conveniently modified) to common-mode suppressed differential-mode bandpass filters. Thus, the value of this two-step ASM approach is enhanced by demonstrating its potential for the unattended design of complex filters, as those considered in this paper.
机译:本文报道了通过主动空间映射(ASM)优化实现平衡微带宽带带通滤波器的自动化和无人值守设计。所提出的滤波器基于通过四分之一波长传输线耦合的多节镜像阶梯式阻抗谐振器(SIR),用作导纳反相器。这样的谐振元件提供了传输零点,对于抑制感兴趣区域中的共模(差分滤波器通带)和改善差模阻带(抑制电平和选择性)有用。由于逆变器功能有限(与宽分数带宽有关),因此自动滤波器设计需要两步过程。使用第一个ASM,可以确定满足所需规格的过滤器原理图(最佳过滤器原理图)。然后,通过第二种ASM算法合成布局。作为说明性(和代表性)示例,将对这两种算法进行详细说明并将其应用于两个滤波器的合成。本文证明,作者先前应用于宽带单端滤波器的两步ASM优化方案(首先提供最佳原理图,然后是布局)可以扩展(方便地修改)为共模抑制差模带通滤波器。因此,通过展示其在无人值守设计复杂滤波器方面的潜力,可以增强这种两步ASM方法的价值,如本文所述。

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