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Modeling of a three-phase inductive power transfer system in phasor domain for fast simulation

机译:相量域中的三相感应电力传输系统建模以实现快速仿真

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Contactless charging of electric vehicles by means of inductive power transfer is becoming increasingly popular in the recent years. In contrast to wired power interfaces, user-friendly and secure wireless links with no physical contact are preferable. Especially in the higher power range (>100kW), three-phase approaches are an encouraging alternative to single-phase systems due to great EMC benefits. Effective design and analysis of such inductive power transfer systems containing a three-phase primary as well as a three-phase secondary (pickup) require computation-time provident mathematical models. This paper introduces a mathematical model of a complete three-phase inductive power transfer system as a base for efficient computer simulation of such a system. Based on a time-domain description, an averaged model of the system is developed using the dynamic phasors approach. Simulation results under exemplary conditions are presented to show the performance of the developed model.
机译:近年来,通过感应功率传递对电动车辆进行非接触充电变得越来越普遍。与有线电源接口相反,用户友好且安全的无物理接触的无线链接是可取的。特别是在较高功率范围(> 100kW)中,由于具有很大的EMC优势,三相方法是单相系统的令人鼓舞的替代方法。对于包含三相一次和三相二次(拾取)的此类感应式电力传输系统的有效设计和分析,需要计算时备用的数学模型。本文介绍了完整的三相感应式电力传输系统的数学模型,以此为该系统进行高效计算机仿真的基础。基于时域描述,使用动态相量方法开发了系统的平均模型。给出了在示例性条件下的仿真结果,以显示所开发模型的性能。

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