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Ultraslim S-Type Power Supply Rails for Roadway-Powered Electric Vehicles Generalized Models on Self-Decoupled Dual Pick-Up Coils for a Large Lateral Tolerance

机译:用于道路电动汽车的超薄型S型电源导轨,用于大横向公差的自解耦双拾取线圈通用模型

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摘要

An ultraslim S-type power supply rail, which has a width of only 4 cm, for roadway-powered electric vehicles (RPEVs) is proposed in this paper. The cross section of the core has a thin S-shape, and a vertically-wound multiturn coil is displaced inside the core. In this way, the most slim power supply rail is designed, which is crucial for the commercialization of RPEVs. The construction of roadway infrastructure, which is responsible for more than 80% of the total deployment cost for RPEVs, can be much easier when the width of the power supply rail is so small. To increase portability and to minimize construction time, a foldable power supply module is also proposed in which flexible power cables connect each foldable power supply module such that no connectors are needed during deployment. An effective winding method for minimizing the cable length is proposed, and an optimum core thickness of the proposed power supply rail is determined by FEA simulations and verified by a prototype power supply module. By virtue of the ultraslim shape, a large lateral displacement of 30 cm at an air gap of 20 cm was experimentally obtained, which is 6 cm larger than that of the I-type power supply rail. In addition to the larger lateral displacement, it is estimated that the S-type one has lower EMF than the I-type one because the width of the S-type one is narrower than that of I-type one. The maximum efficiency, excluding the inverter, was 91%, and the pick-up power was 22 kW.
机译:本文提出了一种用于道路电动汽车(RPEV)的超薄S型电源导轨,其宽度仅为4厘米。芯的横截面为薄的S形,并且垂直缠绕的多匝线圈在芯内部移位。这样,设计出了最细长的电源轨,这对于RPEV的商业化至关重要。当电源导轨的宽度很小时,道路基础设施的建设要容易得多,因为道路基础设施占RPEV的总部署成本的80%以上。为了增加便携性并最小化构造时间,还提出了一种可折叠电源模块,其中柔性电源电缆连接每个可折叠电源模块,使得在部署期间不需要连接器。提出了一种有效的绕线方法,以最小化电缆长度,并通过FEA仿真确定了所建议电源轨的最佳铁芯厚度,并通过原型电源模块进行了验证。通过超薄形状,通过实验获得了在20厘米气隙处30厘米的大横向位移,这比I型电源导轨的横向位移大6厘米。除了较大的横向位移之外,据估计,由于S型的宽度比I型的宽度窄,因此S型的EMF比I型的EMF低。除逆变器外,最大效率为91%,拾取功率为22 kW。

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