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Double-Coupled Systems for IPT Roadway Applications

机译:IPT巷道应用的双耦合系统

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摘要

Dynamic powering of in-motion electric vehicles (EVs) using inductive power transfer (IPT) can potentially solve many of the problems currently faced by EVs: in particular range, cost, and charging rate. However, there is currently limited research focused on suitable IPT primary supply-side infrastructure for such roadway IPT systems, and most proposed systems so far have limitations that affect their usefulness and/or suitability. This paper presents a new roadway IPT system using a double-coupled system that can largely resolve these limitations. The proposed system introduces an intermediary coupler circuit (ICC) with frequency changing capability between the power supply primary track and each ground transmitter pad/coil arrangement. Individual charging sections on the roadway can be controlled independently using the ICCs and only turned ON when required, and as such minimize unwanted magnetic leakage fields. The proposed system provides isolation between the power supply and all of the ground transmitter pads, and allows the power supply to run at a lower frequency while the power transfer takes place at a higher frequency. The system can also potentially reduce the impact of dynamic EV charging on the electrical grid at the times of traffic congestion. A laboratory scale prototype system has been constructed and tested. The intermediary coupler achieved an efficiency of 92.5% at an output power of 5 kW with full system operability.
机译:使用感应功率传输(IPT)为动态电动汽车(EV)动态供电可以潜在地解决电动汽车当前面临的许多问题:特别是范围,成本和充电率。但是,目前针对这种道路IPT系统的合适IPT主要供应方基础设施的研究有限,迄今为止,大多数提议的系统都存在影响其实用性和/或适用性的局限性。本文提出了一种使用双耦合系统的新型道路IPT系统,该系统可以在很大程度上解决这些局限性。拟议的系统引入了一个中间耦合器电路(ICC),该电路具有在电源主磁道和每个地面发射器焊盘/线圈装置之间的频率改变能力。可以使用ICC独立控制车道上的各个充电段,并且仅在需要时才将其打开,因此可以最大程度地减少不必要的漏磁场。拟议的系统在电源和所有接地发射器焊盘之间提供隔离,并允许电源以较低的频率运行,而功率传输以较高的频率进行。该系统还可以潜在地减少交通拥堵时动态EV充电对电网的影响。已构建并测试了实验室规模的原型系统。中间耦合器在5 kW的输出功率下具有92.5%的效率,并且具有完整的系统可操作性。

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