← 返回
一种广泛适用的等效气隙法用于计算WPT系统中带有限磁芯线圈间的互感
An Extensively Applicable Equivalent Air Gap Method for Mutual Inductance Calculation Between Coils With Finite Magnetic Cores in WPT Systems
| 作者 | Shuai Dong · Bolong Wei · Beibei Song |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年4月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 有限元仿真 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 无线电能传输 线圈 互感分析 等效气隙 互感计算 |
语言:
中文摘要
线圈是无线电力传输(WPT)系统中的关键部件,其磁场尤其是互感分析对系统预设计与性能评估具有重要意义。为提高传输功率并减少漏磁,通常在线圈内部安装有限尺寸的磁芯,但这显著增加了磁场计算的复杂性,常需依赖耗时的有限元仿真,难以高效优化系统性能。本文基于磁路欧姆定律提出等效气隙(EAG)概念,将带有限磁芯的线圈等效为无磁芯模型,实现互感的快速高效计算。该方法不受线圈与磁芯具体结构限制,适用范围广,并通过仿真与实验结果验证了其有效性。
English Abstract
Coils are the key elements in wireless power transfer (WPT) systems. Performing magnetic field analysis, especially the mutual inductance analysis of the coils, is of great significance for the predesign and performance evaluation of the systems. To enhance transmission power and reduce magnetic leakage, magnetic cores of finite size are typically installed within the coils. However, this installation significantly complicates the calculation of magnetic fields. Generally, simulation analysis using finite element analysis (FEA) tools is required, which is time-consuming and unable to optimize the performance of WPT systems efficiently. This article introduces the concept of equivalent air gap (EAG) based on Ohm’s law for magnetic circuits, allowing coils with finite magnetic cores to be equivalently modeled as coils without cores. The method facilitates rapid and efficient calculations of mutual inductance, remains unaffected by the specific configurations of the coil and core, and therefore offers wide applicability. The effectiveness of the proposed method is validated through both simulation and experimental results.
S
SunView 深度解读
该等效气隙互感计算方法对阳光电源无线充电产品线具有重要应用价值。在车载OBC和充电桩的无线充电模块设计中,该方法可快速优化收发线圈与磁芯的结构参数,替代耗时的有限元仿真,显著提升研发效率。对于PowerTitan储能系统中的磁性元件设计(如耦合电感、变压器),该方法可精确计算漏感与互感,优化磁芯尺寸与气隙配置,提升功率密度。在SG逆变器的磁集成设计中,该方法有助于快速评估多绕组耦合特性,支持高频化与小型化设计。该技术为阳光电源磁性元件的参数化设计与智能优化算法开发提供了高效工具,可集成至iSolarCloud平台的仿真模块,实现产品快速迭代。