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CAD Procedure for High-Performance Composite Corrugated Filters

机译:高性能复合波纹过滤器的CAD程序

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摘要

The design of waveguide low-pass filters is accomplished with a new method, where focus is on the upper stopband performance rather than passband or roll-off requirements. Using an efficient multimode variational formulation, composite filters are generated by direct optimization from an arbitrary number of partial corrugated subelements, each showing mutual ${rm TE}_{10}$-mode passband and different nonintersecting passbands corresponding to higher order modes. The flexibility of this method leads to optimal filter solutions, having the designer full control over key dimensional features, i.e., minimum gap and cavity length. It is therefore possible to design low-pass filters exhibiting broad stopbands free of spurious propagation, without penalties of higher losses, lower power handling capability, larger size, and/or increased manufacturing complexity. Simulated and measured results demonstrate significant advantages over filters designed with conventional methods.
机译: $ {rm TE} _ {10 } $ 模式通带和对应于高阶模式的不同的非相交通带。这种方法的灵活性导致了最佳的过滤器解决方案,使设计人员可以完全控制关键的尺寸特征,即最小的间隙和空腔长度。因此,有可能设计出无杂散传播的宽阻带的低通滤波器,而不会受到更高损耗,更低功率处理能力,更大尺寸和/或增加制造复杂度的不利影响。仿真和测量结果表明,与传统方法设计的滤波器相比,它具有明显的优势。

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