无功元件等分双频功率分配器的设计理论

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
N. S, Rekha G. Nair
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引用次数: 3

摘要

本文提出了一种在不添加任何电抗元件或开路或短路短截线的情况下,在基于威尔金森的功率分配器(WPD)中实现双频工作的设计方法。传递矩阵法用于获得所需设计方程的解析解。进行关于输入和输出端口的导纳表示以执行奇偶模式分析。在这种情况下,每个部分的阻抗保持恒定,但电长度变化。采用不同的电气长度组合,使得总长度保持恒定。电长度是基于双频带分析来选择的,并且取决于调谐比。将获得阻抗匹配的条件应用于所获得的设计方程,从而找出要放置在传输线部分之间的匹配电阻器的值。对所提出的以2.5GHz和7GHz为中心的功率分配器进行了理论计算、仿真和制作。最后,设计程序和实验结果与理论模拟结果吻合良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design Theory of Equal Split Dual- Band Power Divider without Reactive Elements
In this paper, a design approach for getting dual-band working in a Wilkinson-based power divider (WPD) without adding any reactive elements or open- or short-circuited stubs is presented. The transfer matrix approach is used to get the analytical solutions of the required design equations. Admittance representation with respect to the input and output ports is done to perform even-odd mode analysis. In this impedance of each section is kept constant but the electrical length varies. Different combinations of electrical lengths are taken such that the overall length remains constant. The electrical lengths are selected based on dual-band analysis and depend on the tuning ratio. The conditions for attaining the impedance matching are applied to the obtained design equations and hence found out the values of the matching resistors to be placed between the transmission line sections. The proposed power divider centered at 2.5GHz and 7GHz is theoretically calculated simulated and fabricated. Finally, design procedures and experiments show good agreement with theoretical simulation.
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来源期刊
Advanced Electromagnetics
Advanced Electromagnetics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
12.50%
发文量
33
审稿时长
10 weeks
期刊介绍: Advanced Electromagnetics, is electronic peer-reviewed open access journal that publishes original research articles as well as review articles in all areas of electromagnetic science and engineering. The aim of the journal is to become a premier open access source of high quality research that spans the entire broad field of electromagnetics from classic to quantum electrodynamics.
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