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State-of-the-art literature review of WPT: Current limitations and solutions on IPT

机译:WPT的最新文献回顾:IPT的当前局限性和解决方案

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N. Tesla, the prospector of the power delivery in free space, suggested a huge amount of power can be transferred through the earth while G. Marconi concentrated on inventing wireless communication system over the ocean a hundred years ago. Whereas the telecommunication technology has been developed successfully, the development of wireless power transfer (WPT) system had been stagnant over decades as large devices were required to create the resonant oscillation in a safety manner and the system indicated low efficiency. Due to the development of power devices and the day-by-day increase of mobile products, electric vehicles and wireless sensors in smart grids, WPT technology is expected to undergo substantial advancement and significant power systems applications in the near future. This paper is aimed at introducing a state-of-the-art review for existing WPT technologies with detailed comparison. The paper also presents the limitation of inductive power transfer system through simulation and practical analyses. Finally, recommendations and future perspective to overcome these limitations are provided with four main themes: design, efficiency, stability, and safety. (C) 2017 Elsevier B.V. All rights reserved.
机译:自由空间电力输送的探矿者N.特斯拉(N. Tesla)建议,一百年前,马可尼(G. Marconi)致力于在海洋上发明无线通信系统时,可以通过地球传输大量电力。尽管已经成功地开发了电信技术,但是由于需要大的设备以安全的方式产生谐振,并且无线系统的效率低下,因此无线功率传输(WPT)系统的开发停滞了数十年。由于电力设备的发展以及智能电网中移动产品,电动汽车和无线传感器的日渐增长,WPT技术有望在不久的将来得到长足的进步和重要的电力系统应用。本文旨在介绍现有WPT技术的最新技术,并进行详细比较。本文还通过仿真和实际分析提出了感应电力传输系统的局限性。最后,提出了克服这些限制的建议和未来展望,包括四个主要主题:设计,效率,稳定性和安全性。 (C)2017 Elsevier B.V.保留所有权利。

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