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RD OF NON-CONTACT RAPID CHARGING INDUCTIVE POWER SUPPLY SYSTEM FOR ELECTRIC-DRIVEN VEHICLES

机译:电动汽车非接触式快速充电感应电源系统的研发

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Our research group has developed a non-contact rapid charging inductive power supply (IPS) system with safe, simple, and rapid recharging characteristics for electric-driven vehicles principally for electric vehicles and plug-in hybrids. Outstanding features of the system include high efficiency, significant weight reduction, and a long air gap, and have been implemented through the optimisation of the shape of the track and pickup. This paper mainly focuses on the results of performance evaluation tests of the developed system. The results obtained are listed below, a) Through non-contact electric power transmission experiments, the attainment of a 92% total efficiency was confirmed during 30 kW transmissions, b) The developed IPS was installed on an electric micro-bus WEB-1 Advanced. Non-contact power transmission was conducted, and the successful recharging of the on-board battery was confirmed, c) The weight of batteries mounted can be reduced by implementing the IPS on electric vehicles with frequent recharging. Under the operating conditions studied in our project, it was concluded that an approximately 9% reduction in electric consumption rate can be achieved through 11% reduction in vehicle weight, d) Taking advantage of the increased flexibility in weight resulting from implementation of the IPS, a narrower SOC operating range can easily be achieved for the purpose of prolonging battery life. Under the operating conditions studied in our project, it was concluded that an approximately 55% reduction in SOC range can be achieved.
机译:我们的研究小组开发了一种非接触式快速充电感应电源(IPS)系统,该系统具有安全,简单和快速的特性,适用于电动汽车(主要用于电动汽车和插电式混合动力汽车)。该系统的突出特点包括效率高,重量减轻和气隙长,并且已通过优化轨道和拾音器的形状来实现。本文主要关注开发系统的性能评估测试的结果。下面列出了获得的结果:a)通过非接触式电力传输实验,确认在30 kW传输期间总效率达到92%,b)开发的IPS安装在电动微型客车WEB-1 Advanced上。进行了非接触式电力传输,并确认车载电池已成功充电; c)通过在频繁充电的电动汽车上实施IPS,可以减轻安装电池的重量。在我们的项目研究的运行条件下,得出的结论是,通过减少11%的车辆重量,可以将电耗率降低大约9%; d)利用实施IPS带来的重量增加的灵活性,为了延长电池寿命,很容易实现较窄的SOC工作范围。在我们的项目中研究的运行条件下,得出的结论是,SOC范围可降低约55%。

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