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Non-radiative wireless power transfer using inductive resonance coupling

机译:使用电感谐振耦合的无辐射无线电力传输

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This paper presents an attempt to develop a model for wireless power transfer (WPT) using resonance inductive coupling over short distances with increased efficiency in comparison to simple inductively coupled coils for the same practical conditions. Non-radiative transfer technique is employed for its practical range and efficiency. With advances in WPT charging devices will be made a lot more convenient and faster as the obstacles of charging time, range, safety and cost can be easily mitigated and this also paves its way to Electric Vehicles (EV) charging which are presently gaining popularity. Charging devices may also include cell phones, medical equipment like pacemaker. The main difficulties of WPT are low efficiency and short range and this aspect with respect to the physical shape and design of coils along with strong and weak coupling is reviewed in this paper. Finally a model is proposed and implemented practically.
机译:本文提出了在相同的实际条件下,与简单的电感耦合线圈相比,使用短距离谐振电感耦合以更高的效率开发无线功率传输(WPT)模型的尝试。由于其实用范围和效率而采用了非辐射转移技术。随着WPT充电技术的进步,充电时间,续航里程,安全性和成本等障碍可以轻松缓解,这将使充电设备变得更加方便,快捷,这也为目前正在普及的电动汽车(EV)充电铺平了道路。充电设备可能还包括手机,起搏器等医疗设备。 WPT的主要困难是效率低,范围短,本文就线圈的物理形状和设计以及强弱耦合方面进行了综述。最后提出了一种模型,并在实践中加以实现。

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