5G波导滤波器的设计与仿真

J. Tan, S. Cheab, G. S. Ng, S. Soeung
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引用次数: 0

摘要

随着高速无线通信需求的不断增加,滤波器设计在选择目标频谱以支持更高的数据速率方面起着重要作用。本文提出了一种双模波导滤波器,其目的是通过在一个谐振腔中具有两个模式来减小滤波器的尺寸,同时保持其在损耗和功率处理能力方面的性能。该滤波器是基于四阶切比雪夫多项式实现的。为了验证这一点,设计了一个工作频率为3.9 GHz的双模圆波导滤波器,并利用ANSYS高频结构模拟器(HFSS)软件进行了仿真。它具有0.14 dB的低通带插入损耗,良好的通带内回波损耗为15.11 dB, 3.4 GHz时阻带抑制性能为30 dB,并且在通带内观察到所有四个传输极。理论响应和仿真响应吻合较好。
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Design & Simulation of Waveguide Filter for 5G Application
With the increasing demand of high-speed wireless communication, filter design plays an important role in selecting the targeted frequency spectrum to support higher data rates. This paper presents dual-mode waveguide filter with the aim to minimize the size of filter by having two modes in one single resonator and at the same time maintaining its performance in terms of losses and power handling capability. The filer is realized based on fourth-order Chebyshev polynomial. For demonstration, a dual-mode circular waveguide filter operated in 3.9 GHz is designed and simulated using the ANSYS High Frequency Structure Simulator (HFSS) software. It depicts a low passband insertion loss of 0.14 dB, good return loss performance of 15.11 dB within the passband and 30 dB of stopband rejection at 3.4 GHz, with all four transmission poles are observed within the passband. Both theoretical and simulation response are in good agreement with each other.
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