基于三传输路径设计绝对带宽恒定的双频可调带通滤波器

IF 1.4 4区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Jing Guo, Lirong Qian, Litian Wang, Cuiping Li, Yahui Tian, Honglang Li
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引用次数: 0

摘要

本文提出了一种具有独立控制通带和恒定绝对带宽(CABW)的新型可调双频带通滤波器(BPF)。所设计的双频带通滤波器的 CABW 通带是通过可控的电和磁混合耦合获得的。此外,还扩展了从输入端口到输出端口的多条传输路径,以获得额外的传输零点,从而改变了所提双频 BPF 的选择性。所开发滤波器的可调谐性和可切换性可以通过为每个频带引入单个变容二极管偏置电压来实现。对于可调双频 BPF,仿真结果表明,第一个通带的中心频率(CF)在 2.38 至 2.68 GHz 之间变化,第二个通带的中心频率(CF)在 3.28 至 3.88 GHz 之间变化,3-dB 绝对带宽分别为 101 ± 7 MHz 和 98 ± 4 MHz。此外,通过消除施加在变容二极管 CV1 和 CV2 上的电压,滤波器的两个通带也可以独立切换。测量结果与模拟结果十分吻合,验证了设计理论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of dual-band tunable bandpass filter with constant absolute bandwidth based on triple transmission path
In this paper, a novel tunable dual-band bandpass filter (BPF) with independently controlled passbands and constant absolute bandwidth (CABW) is proposed. The CABW passbands of designed dual-band BPF are obtained using manageable electric and magnetic mix coupling. Furthermore, the multiple transmission paths from the input port to the output port are extended for extra transmission zeros, which results in modified selectivity of the proposed dual-band BPF. The tunability and switchability of the developed filter can be implemented by introducing a single bias voltage of varactors for each band. For the tunable dual-band BPF, the simulated results show that the center frequency (CF) of the first passband varies from 2.38 to 2.68 GHz, and the CF of the second passband varies from 3.28 to 3.88 GHz, while 3-dB absolute bandwidths are 101 ± 7 MHz and 98 ± 4 MHz, respectively. Moreover, the two passbands of the filter can also be independently switched by removing the voltage imposed on the varactor CV1 and CV2. The measured results agree well with simulated results, which verify the design theory.
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来源期刊
International Journal of Microwave and Wireless Technologies
International Journal of Microwave and Wireless Technologies ENGINEERING, ELECTRICAL & ELECTRONIC-TELECOMMUNICATIONS
CiteScore
3.50
自引率
7.10%
发文量
130
审稿时长
6-12 weeks
期刊介绍: The prime objective of the International Journal of Microwave and Wireless Technologies is to enhance the communication between microwave engineers throughout the world. It is therefore interdisciplinary and application oriented, providing a platform for the microwave industry. Coverage includes: applied electromagnetic field theory (antennas, transmission lines and waveguides), components (passive structures and semiconductor device technologies), analogue and mixed-signal circuits, systems, optical-microwave interactions, electromagnetic compatibility, industrial applications, biological effects and medical applications.
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