基于二维测量设备的相控阵波束轮廓评估方法研究

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Kazuki Yukawa, T. Matsumuro, T. Ishizaki, Y. Ishikawa
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引用次数: 0

摘要

摘要近年来,人们提出了一种用于微波高功率传输的波束收敛技术——“双向逆行系统”。为了通过实验验证双向反向导引系统的有效性,作者设计了一种二维测量装置。基于自由空间传播理论对平行板波导中的传播进行了模拟,并通过仿真阐明了其理论和特性。利用所设计的仪器,用电探针测量了波导中的电场分布。研制了两种类型的测量设备。一种是四元实验系统,是一种小型的原理验证装置。另一个是16元测量设备,用于下一步对双向反向系统的光束收敛性进行评估。实测结果与仿真结果进行了比较。结果证实,波导中形成的光束被成功测量。从而证明了二维测量设备在评价光束收敛性方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study on Evaluation Method for Beam Profile of Phased Array by Using Two-Dimensional Measurement Equipment
SUMMARY Recently, “Both-Side Retrodirective System” was proposed, as a beam convergence technique, for microwave high power transmission. To demonstrate the effectiveness of the both-side retrodirective system by experiment, the authors propose a 2-dimensional measurement equipment. Propagation in the parallel plate waveguide was analogized based on free-space propagation, and the theory and characteristics were clarified by simulation. The electric field distribution in the waveguide was measured by electric probe with the proposed equipment. Two types of measurement equipment were developed. One is a 4-element experiment system, which is a small-scale device for principle verification. The other is a 16-element measurement equipment, which is intended to evaluate beam convergence of a both-side retrodirective system in the next step. The measured results were compared with simulation results. As a result, it was confirmed that the beam formed in the waveguide was successfully measured. Thus, the effectiveness of 2-dimensional measurement equipment for evaluation of beam convergence was shown.
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来源期刊
IEICE Transactions on Electronics
IEICE Transactions on Electronics 工程技术-工程:电子与电气
CiteScore
1.00
自引率
20.00%
发文量
79
审稿时长
3-6 weeks
期刊介绍: Currently, the IEICE has ten sections nationwide. Each section operates under the leadership of a section chief, four section secretaries and about 20 section councilors. Sections host lecture meetings, seminars and industrial tours, and carry out other activities. Topics: Integrated Circuits, Semiconductor Materials and Devices, Quantum Electronics, Opto-Electronics, Superconductive Electronics, Electronic Displays, Microwave and Millimeter Wave Technologies, Vacuum and Beam Technologies, Recording and Memory Technologies, Electromagnetic Theory.
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