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Sensitivity Analysis and Controller Design of High Power LCC-LCC Compensated Wireless Battery Charging For Electric Ship Applications

机译:电船应用大功率LCC-LCC补偿无线电池充电的灵敏度分析和控制器设计

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Wireless power transfer (WPT) system is emerging in the marine application as more ships are becoming battery-powered. In this paper, a control method is proposed for a high-power wireless chaging system for charging electric ship. In the marine application, the ship is subject to continuous horizontal and vertical misalignment due to sea waves. Battery charging time is another challenge, especially in time-demanding mission-critical operations. To address these new issues, the sensitivity of a WPT system to the variation of magnetic coupling and load has been analytically investigated, and a new adaptive control method has been proposed. The analytical model has been verified through the simulations that emulate the variation of the mutual inductance in marine applications. The proposed control has been experimentally validated using a 5 kW prototype wireless charging system under the electric ship’s horizontal and vertical misalignment conditions.
机译:随着越来越多的船舶采用电池供电,无线电力传输(WPT)系统正在船舶应用中兴起。本文提出了一种用于电动船充电的大功率无线跟踪系统的控制方法。在海事应用中,由于海浪,船舶会遭受连续的水平和垂直错位。电池充电时间是另一个挑战,特别是在时间要求严格的关键任务操作中。为了解决这些新问题,已经对WPT系统对磁耦合和负载变化的敏感性进行了分析研究,并提出了一种新的自适应控制方法。该分析模型已通过仿真进行了验证,该仿真模拟了船舶应用中互感的变化。在电动船的水平和垂直未对准条件下,使用5 kW原型无线充电系统对建议的控制装置进行了实验验证。

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