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首页> 外文期刊>Transportation Electrification, IEEE Transactions on >Evolution of Hybrid Inductive and Capacitive AC Links for Wireless EV Charging—A Comparative Overview
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Evolution of Hybrid Inductive and Capacitive AC Links for Wireless EV Charging—A Comparative Overview

机译:用于无线EV充电的感应式和电容式交流混合链路的发展—比较概述

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摘要

The inductive link in a wireless power transfer (WPT) system, fed by various high-frequency power converters with appropriate control strategies is widely accepted for medium power ( 50 kW) and medium distance (100-200 mm) applications due to notable efficiencies (95) in static wireless charging scenarios. However, considering the dynamic wireless charging, the inductive link implementation for millions of kilometers is quite expensive due to the need for sophisticated resources. Therefore, relatively low-cost capacitive link, which initially focused on low power ( 100 W), small distance ( 10 mm) applications, has gained momentum and is explored for medium power (3kW), medium distance (100mm) applications. It has achieved a considerable dc-dc efficiency (90) and significant misalignment tolerance. This paper aims to find the significant roles played by inductive and capacitive ac link designs in static and dynamic expansion of wireless electric vehicle (EV) charging. Through a relative analysis, this paper emphasizes the need for mutual promotion of these ac links as a hybrid system in order to boost wireless EV charging technology.
机译:无线无线电力传输(WPT)系统中的感应链路由各种高频功率转换器提供适当的控制策略,由于其显着的效率(50 kW)和中等距离(100-200 mm)而被广泛接受95)在静态无线充电方案中。但是,考虑到动态无线充电,由于需要复杂的资源,数百万公里的感应链路实施非常昂贵。因此,相对低成本的电容式链路最初集中在低功率(100 W),小距离(10 mm)应用中,如今已获得了发展动力,并已针对中功率(3kW),中距离(100mm)应用进行了探索。它已经实现了可观的dc-dc效率(90)和显着的失准公差。本文旨在发现电感性和电容性交流链路设计在无线电动汽车(EV)充电的静态和动态扩展中所起的重要作用。通过相关分析,本文强调了将这些交流链路作为混合系统相互推广的必要性,以促进无线电动汽车充电技术的发展。

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