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首页> 外文期刊>Transportation Electrification, IEEE Transactions on >Analysis, Optimization, and Demonstration of a Vehicular Detection System Intended for Dynamic Wireless Charging Applications
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Analysis, Optimization, and Demonstration of a Vehicular Detection System Intended for Dynamic Wireless Charging Applications

机译:用于动态无线充电应用的车辆检测系统的分析,优化和演示

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To overcome the range limitation associated with electric vehicles (EVs), the emerging technology of dynamic wireless power transfer (DWPT) can be employed. Electrified road infrastructure and wirelessly charged vehicle constitute a complex dynamic system whose successful operation requires coordination between the two subsystems and a certain level of knowledge regarding the EV position and speed on the road. A comprehensive vehicular detection system (Dwrr-vps) operating on magnetic principle and intended for DWPT applications is proposed in this paper. The following functionalities are integrated into the DWPT-VDS: a vehicle detection mechanism, the measurement of the vehicle lateral misalignment, vehicle speed measurement, driver information system (DIS), as well as the wireless communication between a roadside power controller and the DIS. When integrated with a DWPT charging system, the DWPT-VDS allows some critical functions, such as correction of the lateral position of the vehicle by the driver, an extended range of full-power reception for a misaligned vehicle, as well as the smooth transition between adjacent pads. This paper presents a comprehensive study of different coil structures and algorithms for speed and misalignment estimation in a DWPT-VDS, along with their comparison. The objective is to maximize the misalignment detection range for a given size of test coils and provide a robust solution for vehicles with different ground clearances. A three-coil system for vehicle misalignment and speed detection is selected as part of a proof-of-concept design. Part of the system is embedded in the road, and the rest is mounted on a wirelessly charged electric bus. The implemented system has been successfully tested in an outdoor environment. A DIS visualizing speed and misalignment information is also developed and tested to help the driver align the vehicle with the road-embedded primary pads.
机译:为了克服与电动车辆(EVS)相关的范围限制,可以采用动态无线电力传输(DWPT)的新出现技术。电气化的道路基础设施和无线充电的车辆构成了一个复杂的动态系统,其成功的操作需要在两个子系统之间的协调和一定程度的知识,了解道路上的EV位置和速度。本文提出了一种在磁原理上运行和用于DWPT应用的综合车辆检测系统(DWRR-VPS)。以下功能集成到DWPT-VDS中:车辆检测机构,车辆横向未对准,车速测量,驾驶员信息系统(DIS)的测量,以及路边电力控制器和DIS之间的无线通信。当与DW​​PT充电系统集成时,DWPT-VD允许一些关键功能,例如通过驱动器校正车辆的横向位置,用于未对准的车辆的延伸范围的全电源接收,以及平滑过渡在相邻的垫之间。本文介绍了对DWPT-VDS中的速度和未对准估计的不同线圈结构和算法的综合研究。目的是为给定尺寸的测试线圈最大化未对准检测范围,并为具有不同地间隙的车辆提供鲁棒解决方案。选择用于车辆未对准和速度检测的三线圈系统作为概念验证设计的一部分。部分系统嵌入路上,其余的安装在无线电荷的电动总线上。已实施的系统已在室外环境中成功测试。还开发并测试了DIS可视化速度和未对准信息,以帮助驾驶员将车辆与道路嵌入的主焊盘对齐。

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