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The three-dimensional electromagnetic simulation analysis of power transmission of loosely coupled transformer based on ANSYS

机译:基于ANSYS的松耦合变压器动力传输的三维电磁仿真分析

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The loosely coupled transformer (also called separable transformer) is the key component of inductive coupled power transfer (ICPT) system. Its coupling coefficient is very low which limits transmission efficiency of ICPT system. This paper describes the principle of ICPT system, and utilizes ANSYS software to simulate magnetic field of loosely coupled transformer. Three-dimensional simulation can show the core structure more clearly, and makes the results of analysis more accurate. Through quantitative analyzing the distributions of magnetic field intensity, magnetic flux density of loosely coupled transformer and the secondary-side load electromotive force, the paper draws a conclusion that the key technical parameters, such as operating frequency, air gap, core thickness and magnetic core position shift etc have significant impact on the coupling coefficient of the loosely coupled transformer. Furthermore, the transmission efficiency is improved during the resonance after adding capacitors to primary side in the circuit. The simulation analysis of the relationship between the key parameters and the coupling coefficient will be very helpful for the development of loosely coupled transformer and subsequent experiments.
机译:松耦合变压器(也称为可分离变压器)是电感耦合功率传输(ICPT)系统的关键组件。它的耦合系数很低,限制了ICPT系统的传输效率。本文介绍了ICPT系统的原理,并利用ANSYS软件模拟了松耦合变压器的磁场。三维模拟可以更清楚地显示核心结构,并使分析结果更准确。通过定量分析松耦合变压器的磁场强度,磁通密度和次级侧负载电动势的分布,得出结论:工作频率,气隙,铁芯厚度和磁芯等关键技术参数位置偏移等都会对松耦合变压器的耦合系数产生重大影响。此外,在将电容器添加到电路的初级侧之后的谐振期间,提高了传输效率。关键参数与耦合系数之间关系的仿真分析将对开发松耦合变压器和后续实验非常有帮助。

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