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首页> 外文期刊>IEEE Transactions on Industry Applications >Aerodynamic Fluid Bearings for Translational and Rotating Capacitors in Noncontact Capacitive Power Transfer Systems
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Aerodynamic Fluid Bearings for Translational and Rotating Capacitors in Noncontact Capacitive Power Transfer Systems

机译:用于非接触式电容功率传输系统中的平移和旋转电容器的气动流体轴承

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摘要

Wireless power transfer (WPT) is commonly accomplished with magnetic (inductive) techniques for a wide range of applications. Electrostatic or capacitive power transfer (CPT) approaches to WPT have had limited exposure primarily due to lower achievable power density when compared to inductive WPT techniques. Recently, high-frequency (in kilohertz to megahertz) power electronics have reintroduced capacitive techniques as an option for WPT over short distances ($<$ 2 mm) for applications such as slip ring replacement. To further the practicality of CPT, capacitive coupling must be maximized in an effective manner, i.e., the volumetric capacitance density of rotating/translational capacitors must be significantly increased. This paper proposes the use of aerodynamic fluid bearings to maximize capacitive coupling between stationary and moving surfaces, by minimizing their separation distance, allowing for greater surface area per unit volume. The technique allows micrometers of separation distance between moving surfaces while maintaining manufacturability and mechanical robustness. Coupling capacitance is increased up to 100 times greater than rigid plate rotating and translational CPT systems. Additional benefits include the estimation of mechanical system parameters such as speed. Operational characteristics and design highlights are presented and corroborated with experimental results for general slip ring replacement applications.
机译:无线功率传输(WPT)通常是通过磁(感应)技术来实现的,适用于广泛的应用。与电感式WPT技术相比,静电或电容式功率传输(CPT)方法对WPT的暴露有限,这主要是由于可实现的较低功率密度。最近,高频(千赫兹至兆赫兹)电力电子技术已重新引入电容技术,作为短距离($ <$ 2 mm)WPT的替代品,用于诸如滑环更换等应用。为了进一步提高CPT的实用性,必须以有效的方式使电容耦合最大化,即必须显着增加旋转/平移电容器的体积电容密度。本文提出使用气动流体轴承,通过最小化其分离距离,使固定和运动表面之间的电容耦合最大化,从而允许每单位体积更大的表面积。该技术可在保持可制造性和机械坚固性的同时,使移动表面之间的分离距离达到微米级。耦合电容比刚性板旋转和平移CPT系统增加了多达100倍。其他好处包括估算机械系统参数,例如速度。提出了运行特性和设计要点,并与常规滑环更换应用的实验结果相佐证。

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