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Analysis of the Relationship between the Parameters of IPT Transformer and Power Electronic System

机译:IPT变压器参数与电力电子系统关系分析

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Inductive power transfer (IPT) is a promising technology that can replace the wire based power transfer. Efficiency of these systems will be a critical performance index that will determine their future in commercial applications. This paper analyses a series-series(SS) compensated IPT system using Boucherot bridge current source model to establish the relationship between magnetic pad parameters (mutual inductance) and power electronic system parameters (input and output voltages and currents). Analysis was used to design a 3.7 kW IPT system. The design is validated with the aid of finite element analysis software, ANSYS Maxwell and Simplorer. The proposed design is capable of transferring power at an efficiency of 95.88%. Furthermore, analysis shows that the mutual inductance requirement decreases with the increase in rated power for a SS compensated IPT system.
机译:感应式功率传输(IPT)是一种有前途的技术,可以代替基于导线的功率传输。这些系统的效率将是决定其在商业应用中未来的关键性能指标。本文使用布歇罗特桥电流源模型分析了串联(SS)补偿的IPT系统,以建立磁垫参数(互感)与电力电子系统参数(输入,输出电压和电流)之间的关系。分析用于设计3.7 kW IPT系统。该设计借助于有限元分析软件ANSYS Maxwell和Simplorer进行了验证。提出的设计能够以95.88%的效率传输功率。此外,分析表明,对于SS补偿IPT系统,互感要求随额定功率的增加而降低。

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