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Robust control of wireless power transfer system

机译:无线电源传输系统的鲁棒控制

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In recent years, wireless power transfer systems have successfully been used in various industrial applications due to their contactless power transfer feature. However, these systems behave as higher order resonant networks and hence are highly sensitive to changes in system parameters. Traditional PID controllers often fail to maintain satisfactory power regulation in the presence of parametric uncertainties which include load and circuit parameter variations, variations in magnetic coupling between the primary and secondary coils. To overcome these problems, this paper designs a robust H output feedback controller for a bi-directional inductive power transfer system. The control design is carried out following Ricatti approach. Simulations are conducted to verify the power regulation performance of the proposed controller and it is compared with a classical PID controller. The results show that the H output feedback controller could successfully regulate the power in both directions in the presence of large uncertainties in various circuit parameters.
机译:近年来,无线功率传输系统由于其非接触式功率传输功能而已成功用于各种工业应用中。然而,这些系统表现为高阶谐振网络,因此对系统参数的变化高度敏感。在存在包括负载和电路参数变化,初级线圈和次级线圈之间的磁耦合变化等参数不确定性的情况下,传统的PID控制器通常无法保持令人满意的功率调节。为了克服这些问题,本文设计了一种用于双向感应功率传输系统的鲁棒H输出反馈控制器。控制设计是按照里卡蒂方法进行的。进行仿真以验证所提出控制器的功率调节性能,并将其与经典PID控制器进行比较。结果表明,在各种电路参数存在较大不确定性的情况下,H输出反馈控制器可以成功地双向调节功率。

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