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Design, implementation and experimental results of an inductive power transfer system for electric bicycle wireless charging

机译:电气自行车无线充电电感电力传输系统的设计,实施和实验结果

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摘要

The use of renewable energy and the transformation of transport mode are crucial items for achieving an efficient and clean electrical mobility that allow being competitive on the market. In this context the interface between the power system and the Electric Vehicles (EVs) assumes a strategic role. Specifically, wireless energy transmission, based on Inductive Power Transfer (IPT), is an attractive solution for EVs charging. Moreover, the use of electric bicycles or kick scooters as mode of urban transport is continuously growing because they are lightweight, sustainable, easily parking, flexible and efficient transport devices. Owing to its benefits, the wireless power transfer can be considered suitable for those devices. In fact, IPT can also be exploited for Vehicle-To-Grid (V2G), where the wireless power flow can occur from battery to power grid as well. For E-bike applications, bicycle-to-grid or bicycle-to-bicycle energy transfer are viable solutions by means of a Bi-Directional Inductive Power Transfer (BDIPT). In this paper, a 300 W IPT wireless charger prototype for E-bikes is proposed. Modelling, design, simulation and experimental results of this prototype are provided. Open-loop and closed-loop tests have been performed, focusing on system behaviour for different cases of load, distance and misalignment between the coils.
机译:使用可再生能源和运输模式的转换是实现高效和清洁电动机的关键项目,允许在市场上具有竞争力。在这种情况下,电力系统与电动车辆(EVS)之间的界面具有战略性作用。具体而言,基于电感电力传输(IPT)的无线能量传输是EVS充电的有吸引力的解决方案。此外,使用电动自行车或踢脚车作为城市运输方式的使用是不断增长的,因为它们是重量轻,可持续,易于停车,灵活和高效的运输设备。由于其优势,无线电力传输可以考虑适用于这些设备。实际上,IPT也可以用于车辆到网格(V2G),其中无线电量可能会从电池到电网电网。对于电子自行车应用,通过双向电感电力转移(BDIPT),自行车踏板或自行车到自行车能量传递是可行的解决方案。在本文中,提出了一种用于电子自行车的300 W IPT无线充电器原型。提供了该原型的建模,设计,仿真和实验结果。已经执行了开环和闭环测试,专注于不同负载,距离和线圈之间的错位情况的系统行为。

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