电工技术学报  2024, Vol. 39 Issue (20): 6270-6281    DOI: 10.19595/j.cnki.1000-6753.tces.231516
电工理论 |
同轴多层筒式空心线圈自感和互感解析计算方法
陈彬1,2, 姜鹏飞1, 万妮娜3, 冯昱璋4, 黄力1,2
1.三峡大学电气与新能源学院 宜昌 443002;
2.三峡大学湖北省输电线路工程技术研究中心 宜昌 443002;
3.国网湖北省电力有限公司宜昌供电公司 宜昌 443000;
4.国网湖北省电力有限公司武汉供电公司 武汉 430000
Analytical Calculation for Self and Mutual Inductance of Coaxial Multi Layer Cylindrical Hollow Coils
Chen Bin1,2, Jiang Pengfei1, Wan Nina3, Feng Yuzhang4, Huang Li1,2
1. College of Electrical Engineering and New Energy China Three Gorges University Yichang 443002 China;
2. Hubei Provincial Engineering Technology Research Center for Power Transmission Line China Three Gorges University Yichang 443002 China;
3. Yichang Electric Company State Grid Hubei Electric Power Company Yichang 443000 China;
4. Wuhan Electric Company State Grid Hubei Electric Power Company Wuhan 430000 China
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摘要 在电磁耦合的无线电能传输系统中,准确获取线圈电感参数是设计和优化无线电能传输系统的重要理论依据。现有的无线电能传输系统研究大多针对平面板结构线圈,同轴多层筒式空心线圈相比于平面板线圈具有更高的传输功率和传输效率。因此,该文针对同轴多层筒式空心线圈,提出了一种考虑高频涡流效应的自感和互感解析计算方法。首先,将单匝线圈截面离散等效为数量众多、形状相同的网格带电圆环单元,采用离散等效求和法推导出单匝线圈的自感和线圈间互感的解析式;然后,基于筒式空心线圈的整体结构以及考虑高频涡流效应,推导出基于第一类、第二类完全椭圆积分和开尔文函数的一、二次线圈自感和总互感计算的理论解析式;最后,以两种不同排布方式的筒式空心线圈为例,对比解析计算、有限元计算和实验测量结果,验证了所提解析法的可行性,同时也为筒式空心线圈的设计提供参考依据。
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关键词 无线电能传输电感参数筒式空心线圈离散等效涡流效应解析计算    
Abstract:In the electromagnetic coupling of wireless power transmission systems, accurate calculation of the coil inductance parameters is an important theoretical basis. The existing analytical calculations for coil inductance mostly focus on planar plate coils to study the relationship between coil inductance and coil structure, ignoring the influence of frequency. However, the coaxial multilayer cylindrical structure of the air-core transformer (ACT) has a higher coupling coefficient and transmission efficiency than the planar plate coil under the same quality conditions. However, since the ACT has no magnetic conductive material, it has no specific magnetic flux path, and the magnetic field cannot be bound to a certain part. Usually, it is calculated using the three-dimensional finite element method, which requires a high computer configuration, a large amount of storage space, and sufficiently fast computing speed, resulting in high computational costs. Therefore, this paper proposes an analytical calculation method for the self and mutual inductance of coaxial multilayer cylindrical hollow coils considering high-frequency eddy current effects.
Firstly, the magnetic chain method derives the analytical equations for the self and mutual inductance of a single-turn coaxial parallel charged circular ring. Secondly, the cross-section of the single-turn coil is discretized into grid-charged circular ring elements with the same shape. The analytical equations for the single-turn coil’s self-inductance and the coils' mutual inductance are derived using the discrete equivalent summation method. Based on the first and second types of complete elliptic integrals and Kelvin functions, analytical formulas are derived to calculate the self-inductance of the primary and secondary coils and the total mutual inductance. Finally, taking two different arrangements of cylindrical hollow coils as examples, the proposed analytical method is verified by comparing analytical calculations, finite element calculations, and experimental measurements. This method considers the effect of frequency on coil inductance parameters and significantly reduces the computational cost.
Within the frequency range of 1~100 kHz, the inductance's average relative errors of the proposed method and the simulated values are 2.779% and 4.118% for the cylindrical hollow coils without cross-transposition, and 2.278% and 2.200% for the partially cross-transposition cylindrical hollow coils. The proposed method can calculate the self-inductance and total mutual inductance of the primary and secondary coils of cylindrical hollow coils with different arrangements and frequencies. Therefore, the electromagnetic coupling of the cylindrical hollow coil can be analyzed, which provides a reference for the parametric design of the coil.
Key wordsWireless power transmission    inductance parameter    cylindrical type hollow coil    discrete equivalence    eddy current effect    analytical calculation   
收稿日期: 2023-09-13     
PACS: TM724  
基金资助:国家自然科学基金青年科学基金项目(52107006)和湖北省自然科学基金面上项目(2021CFB149)资助
通讯作者: 陈 彬 男,1989年生,博士,副教授,研究方向为电力装备电磁特性模拟与测量技术、电工新材料综合特性模拟与测量技术等。E-mail: chenbin@ctgu.edu.cn   
作者简介: 姜鹏飞 男,1998年生,硕士研究生,研究方向为高频磁心损耗的模拟和空心变压器的优化设计等。E-mail: 2308679871@qq.com
引用本文:   
陈彬, 姜鹏飞, 万妮娜, 冯昱璋, 黄力. 同轴多层筒式空心线圈自感和互感解析计算方法[J]. 电工技术学报, 2024, 39(20): 6270-6281. Chen Bin, Jiang Pengfei, Wan Nina, Feng Yuzhang, Huang Li. Analytical Calculation for Self and Mutual Inductance of Coaxial Multi Layer Cylindrical Hollow Coils. Transactions of China Electrotechnical Society, 2024, 39(20): 6270-6281.
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https://dgjsxb.ces-transaction.com/CN/10.19595/j.cnki.1000-6753.tces.231516          https://dgjsxb.ces-transaction.com/CN/Y2024/V39/I20/6270