首页> 外文期刊>IEEE Transactions on Power Electronics >Design and Control of Inductive Power Transfer System for Electric Vehicles Considering Wide Variation of Output Voltage and Coupling Coefficient
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Design and Control of Inductive Power Transfer System for Electric Vehicles Considering Wide Variation of Output Voltage and Coupling Coefficient

机译:考虑输出电压和耦合系数变化较大的电动汽车感应功率传输系统的设计与控制

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摘要

In this paper, a design and control scheme of the inductive power transfer (IPT) system for electric vehicles are proposed, considering a wide variation in output voltage and coupling coefficient. The characteristics of the proposed IPT system and a design method for the resonant network are suggested. By utilizing the battery management converter at the secondary side, the design and control can be simplified while managing the output voltage and power of the battery. In order to achieve high efficiency by reducing the voltage–ampere rating, zero phase angle tracking control is proposed. In addition, a phase-shift control is applied to the primary side to ensure the stable system operation by limiting output voltage. A 3.3-kW laboratory prototype with magnetic power pads is manufactured, and the validity of the proposed design and control is verified through experimental results using the laboratory prototype.
机译:在本文中,考虑到输出电压和耦合系数的广泛变化,提出了一种电动汽车感应功率传输(IPT)系统的设计和控制方案。提出了所提出的IPT系统的特点和谐振网络的设计方法。通过在次级侧利用电池管理转换器,可以简化设计和控制,同时管理电池的输出电压和功率。为了通过降低电压-安培额定值来实现高效率,提出了零相角跟踪控制。此外,相移控制应用于初级侧,以通过限制输出电压来确保系统稳定运行。制造了带有磁垫的3.3 kW实验室原型,并通过使用该实验室原型的实验结果验证了所提出的设计和控制的有效性。

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