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Controller Synthesis of a Bidirectional Inductive Power Interface for electric vehicles

机译:控制电动汽车双向感应电源界面的合成

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Bidirectional Inductive Power Transfer (IPT) systems are preferred for Vehicle-to-Grid (V2G) applications. Typically, bidirectional IPT systems consist of high order resonant networks, and therefore, the control of bidirectional IPT systems has always been a difficulty. To date several different controllers have been reported, but these have been designed using steady-state models, which invariably, are incapable of providing an accurate insight into the dynamic behaviour of the system A dynamic state-space model of a bidirectional IPT system has been reported. However, currently this model has not been used to optimise the design of controllers. Therefore, this paper proposes an optimised controller based on the dynamic model. To verify the operation of the proposed controller simulated results of the optimised controller and simulated results of another controller are compared. Results indicate that the proposed controller is capable of accurately and stably controlling the power flow in a bidirectional IPT system.
机译:双向感应电力传输(IPT)系统是用于车辆到网格(V2G)应用的。通常,双向IPT系统由高阶谐振网络组成,因此,双向IPT系统的控制始终是难度。迄今为止,已经报告了几种不同的控制器,但是这些不同的控制器使用了稳态模型,这些模型不平衡,无法对系统的动态行为提供准确的洞察,该系统的动态状态空间模型已经存在报道。但是,目前该模型未被用来优化控制器的设计。因此,本文提出了一种基于动态模型的优化控制器。为了验证所提出的控制器的操作,比较了优化控制器的仿真结果和另一控制器的模拟结果。结果表明,所提出的控制器能够精确且稳定地控制双向IPT系统中的功率流。

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