应用于无线电力传输的4元和32元整流天线阵列的仿真、设计与制作

D. C. Nguyen, N. H. Hoang, H. T. Lam, A. Dao
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引用次数: 1

摘要

无线电力传输(WPT)技术是近年来国际上的一个重点研究方向。WPT可以分为两种主要方向:第一种是采用电感耦合、谐振耦合的WPT,第二种是采用微波功率束和激光功率束的光束功率技术的WPT。采用波束发电技术的WPT系统由太阳能卫星和整流天线阵列组成。太阳能发电卫星由接收太阳能的大型太阳能电池矩阵、将太阳能转化为微波(或激光)波束功率的微波装置(或激光装置)和将功率波束经空间传输到整流天线阵列的发射天线阵列组成。整流天线阵列接收微波功率束并整流为直流功率。采用波束功率技术的WPT最重要的要求是高收集效率。为了获得较高的收集效率,整流天线阵列必须满足其效率的最优要求。这一要求在无线电力传输系统中起着非常重要的作用。本文介绍了在2.45 GHz频率下,采用集成J形平衡的微带偶极子天线对4元和32元整流天线阵列进行仿真、设计和实验制作。给出了四元整流天线的一些仿真、设计和制造结果以及一些实验测量结果,并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation, design and fabrication of 4-element and 32-element rectenna array applying in the wireless power transmission
Recently the wireless power transmission (WPT) technology is a priority research direction in the world. The WPT can be divided into two main orientations: firstly WPT using inductive coupling, resonant coupling, and secondly WPT using the beam power technologies by microwave power beam and laser power beam. The WPT system with the beam power technology consists of a solar power satellite and rectenna array. The solar power satellite is composed of a large solar cell matrix to receive solar energy, microwave devices (or laser devices) to convert from solar energy into microwave (or laser) beam power, and a transmitting antenna array to transmit the power beam via the space to the rectenna array. The rectenna array receives microwave power beam and rectifies to DC power. The most important requirement for WPT using beam power technology is high collection efficiency. In order to get high collection efficiency, the rectenna array has to fulfill optimal requirement of its efficiency. This requirement plays a very important role in a wireless power transmission system. In this paper, we represent the simulation, design and the experimental fabrication of rectenna array with 4-element and 32-element rectenna array using micro strip dipole antennas with the integrated J shaped balun at the frequency of 2.45 GHz. Some simulation, design and fabrication results as well as several experimental measurement results of 4-element rectenna were shown and discussed.
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