Novel Circuit-Shape Leaky Wave Waveguide for Microwave Snow melting

T. Maruyama, Shunta Kasai, Koki Shibata, M. Omiya, M. Nakatsugawa, Y. Tamayama
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引用次数: 6

Abstract

In a snow melting device using microwaves, it is generally necessary to install some waveguides each with a power source in order to melt snow in a planar area. This paper proposes a novel leaky wave slotted waveguide that is constructed in a circuit shape to achieve uniform snow melting for an area with a single microwave power-supply device with low cost. The behavior of the electromagnetic field in the proposed structure, in which the electromagnetic waves radiated from the feeding point go around the waveguide and return, was analyzed using the FDTD method. The electrical characteristics of the proposed waveguide simulated with parameterized position of the feeding point and the slot spacing were compared. The results clarified that the electric field strength in the upper surface direction of the waveguide increase when the slot spacing was set to the guide wavelength and the feeding point was located at the end in the longitudinal direction of the circuit.
用于微波融雪的新型电路型漏波波导
在使用微波的融雪装置中,为了在平面区域内融雪,通常需要安装一些带有电源的波导。本文提出了一种新型的漏波槽波导,它以电路的形式构成,用一个低成本的微波电源器件实现一个地区的均匀融雪。利用时域有限差分法分析了该结构中从馈电点发射的电磁波绕过波导并返回的电磁场行为。通过参数化馈电点位置和槽距对该波导的电学特性进行了仿真比较。结果表明,当槽距设置为波导波长且馈电点位于电路纵向的末端时,波导上表面方向的电场强度增加。
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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