Vector magnetic circuit analysis of silicon steel sheet parameters under different frequencies for electrical machines

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Electric Power Applications Pub Date : 2024-06-03 DOI:10.1049/elp2.12451
Wei Qin, Ming Cheng, Zheng Wang, Peng Han, Xinkai Zhu, Wei Hua
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Abstract

Silicon steel sheets (SSSs), serving as the principal constituent of the magnetic circuit in electric machines, necessitates precise modelling and accurate computation using magnetic circuit theory as a prerequisite for analysing the characteristics of electric machines. Nevertheless, the conventional magnetic circuit theory, limited to a single reluctance component, fails to address the phase relationship between magnetomotive force and magnetic flux, and inadequately represents the magnetic flux distribution observed under high-frequency conditions. Consequently, the existing magnetic circuit model for SSSs remains imperfect in its current state. Fortuitously, the advent of magductance has effectively addressed these challenges. Building upon magductance, this study deduces the fundamental laws and theorem within the vector magnetic circuit theory. Subsequently, a distributed parameter vector magnetic circuit model for the SSSs is constructed, accompanied by the derivation of expressions pertaining to its reluctance and magductance. The authors propose the transfer function composed of reluctance and magductance parameters, successfully resolving the phase between the magnetic circuit vectors, the magnetic flux distribution, and the magnetic circuit loss under different frequencies for SSSs. Finally, experimental findings affirm the efficacy and validity of the distributed parameter vector magnetic circuit model for SSSs. The proposal of vector magnetic circuit theory opens a whole new door for the analysis, computation, and optimisation of electric machines.

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不同频率下电机硅钢片参数的矢量磁路分析
硅钢片(SSS)作为电机磁路的主要组成部分,需要使用磁路理论进行精确建模和计算,这是分析电机特性的先决条件。然而,传统的磁路理论仅限于单一磁阻分量,无法解决磁动力和磁通量之间的相位关系,也无法充分反映高频条件下的磁通量分布。因此,现有的 SSS 磁路模型仍不完善。幸运的是,磁感应强度的出现有效地解决了这些难题。本研究以磁感为基础,推导出矢量磁路理论的基本规律和定理。随后,作者构建了 SSS 的分布参数矢量磁路模型,并推导出磁阻和磁感的相关表达式。作者提出了由磁阻和磁感参数组成的传递函数,成功地解决了 SSS 在不同频率下的磁路矢量、磁通分布和磁路损耗之间的相位问题。最后,实验结果肯定了分布参数矢量磁路模型在 SSS 上的有效性和正确性。矢量磁路理论的提出为电机的分析、计算和优化打开了一扇全新的大门。
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来源期刊
Iet Electric Power Applications
Iet Electric Power Applications 工程技术-工程:电子与电气
CiteScore
4.80
自引率
5.90%
发文量
104
审稿时长
3 months
期刊介绍: IET Electric Power Applications publishes papers of a high technical standard with a suitable balance of practice and theory. The scope covers a wide range of applications and apparatus in the power field. In addition to papers focussing on the design and development of electrical equipment, papers relying on analysis are also sought, provided that the arguments are conveyed succinctly and the conclusions are clear. The scope of the journal includes the following: The design and analysis of motors and generators of all sizes Rotating electrical machines Linear machines Actuators Power transformers Railway traction machines and drives Variable speed drives Machines and drives for electrically powered vehicles Industrial and non-industrial applications and processes Current Special Issue. Call for papers: Progress in Electric Machines, Power Converters and their Control for Wave Energy Generation - https://digital-library.theiet.org/files/IET_EPA_CFP_PEMPCCWEG.pdf
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