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Analytical Design Study of a Novel Witricity Charger With Lateral and Angular Misalignments for Efficient Wireless Energy Transmission

机译:具有横向和角度错位的新型无线充电器的高效无线分析仪的分析设计研究

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摘要

Detailed theoretical and numerical analysis reveals that Witricity, which was first reported by a research team at the Massachusetts Institute of Technology, is efficient and practical for mid-range wireless energy exchange to transmit nontrivial amount of power wirelessly over a long distance. This paper presents an analytical model, based on Witricity technology, for resonant magnetic coupling to address misalignments between the transmitter and receiver of this advanced system. The relationships among the energy transfer efficiency and several key parameters of the system are analyzed using finite element method (FEM). Formulae are derived for the magnetic field of the receiver coil when it is laterally and angularly misaligned from the transmitter. A resonant near-field power transfer formula is suggested to incorporate the coil characteristics and misalignments. Experiments have also been carried out to facilitate quantitative comparison. It is shown that a maximum degree of misalignment can be defined in a given application. The analysis reported allows a formal design procedure to be established for the optimization of Witricity for a given application.
机译:详细的理论和数值分析显示,Witricity是麻省理工学院的一个研究小组首先报告的,它对于中距离无线能量交换在长距离无线传输非平凡的电量方面非常有效和实用。本文提出了一种基于Witricity技术的分析模型,该模型用于共振磁耦合以解决该高级系统的发射器和接收器之间的未对准问题。使用有限元方法(FEM)分析了能量传输效率与系统几个关键参数之间的关系。当接收器线圈在横向和角度上偏离发射器时,可以推导接收器线圈的磁场公式。建议采用谐振近场功率传输公式,以结合线圈特性和失准。还进行了实验以促进定量比较。结果表明,在给定的应用中可以定义最大程度的未对准。报告的分析允许建立正式的设计程序,以优化给定应用的Witricity。

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