Chained-Function Waveguide Filter for 5G and Beyond

Y. P. Lim, Yew Leong Toh, S. Cheab, G. S. Ng, P. Wong
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引用次数: 4

Abstract

In this paper, we implement a new class of filter function, namely the chained-function, in waveguide technology. A sixth-order chained-function polynomial with the seed function of order (1, 2, 3) is implemented in a WR-12 waveguide filter to provide the required out of band rejection level that satisfies a given set of filter specifications. The filter operates at 70 GHz with a theoretical in-band return loss level of 21.14 dB and a fractional bandwidth of 1.43%. The design and synthesize of the chained-function waveguide filter are carried out based on a coupling matrix synthesis approach. A working simulation model using ANSYS High Frequency Structure Simulator (HFSS) is constructed to validate the filter design. The novel chained function polynomial has the ability to reduce the sensitivity with respect to manufacturing tolerance while maintaining a maximum permitted in-band insertion loss ripple. In short, the research findings lead to a high performance, low-cost and sustainable filter implementation with a minimum tuning effort pertaining to the future 5G millimeter-wave communication system.
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用于5G及以后的链函数波导滤波器
本文在波导技术中实现了一类新的滤波函数,即链函数。在WR-12波导滤波器中实现了具有(1,2,3)阶种子函数的六阶链函数多项式,以提供满足给定滤波器规格集所需的带外抑制电平。该滤波器工作于70 GHz,理论带内回波损耗水平为21.14 dB,分数带宽为1.43%。基于耦合矩阵综合的方法,进行了链函数波导滤波器的设计与合成。利用ANSYS高频结构模拟器(HFSS)建立了工作仿真模型,验证了滤波器的设计。该新颖的链式函数多项式能够降低相对于制造公差的灵敏度,同时保持最大允许的带内插入损耗纹波。简而言之,研究结果导致高性能,低成本和可持续的滤波器实现,并以最小的调谐工作量与未来的5G毫米波通信系统相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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