Multiphysics Model of Thomson-Coil Actuators With Closed-Form Inductance Formulas and Comprehensive Mechanical Interactions

IF 1.5 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Journal on Multiscale and Multiphysics Computational Techniques Pub Date : 2024-07-18 DOI:10.1109/JMMCT.2024.3430477
Zehui Sun;Jiazi Xu;Puyi Cui;Guoli Li;Zhong Chen;Guoyong Zhang;Qunjing Wang
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引用次数: 0

Abstract

This paper introduces simplified closed-form formulas for inductance calculations tailored for cases involving coaxial coils in extreme proximity. These formulas address the challenges associated with inductance calculations in the equivalent-circuit method (ECM) modeling of Thomson-coil actuators (TCAs), offering ultra-fast fault current-breaking capability for DC circuit breakers. The implementation of the ECM model using these closed-form formulas features high efficiency, accessibility, and transferability. Importantly, the present implementation of the multiphysics ECM model integrates comprehensive mechanical interactions, providing a benchmark approach for designing TCAs.
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采用闭式电感公式和综合机械相互作用的汤姆逊线圈致动器多物理场模型
本文介绍了用于电感计算的简化闭式公式,该公式专为涉及极度接近的同轴线圈的情况而定制。这些公式解决了汤姆逊线圈致动器(TCA)等效电路法(ECM)建模中电感计算所面临的挑战,为直流断路器提供了超快的故障电流分断能力。利用这些闭式公式实现的 ECM 模型具有高效、易用和可移植的特点。重要的是,目前实施的多物理场 ECM 模型集成了全面的机械相互作用,为 TCA 的设计提供了基准方法。
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CiteScore
4.30
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0.00%
发文量
27
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