An overview of thermal modelling techniques for permanent magnet machines

IF 1.4 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Sina Khalesidoost, Jawad Faiz, Ehsan Mazaheri-Tehrani
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引用次数: 5

Abstract

Permanent magnet (PM) machines have gained increasing attention from the industry because of their potential merits over conventional electrical machines. High-temperature level in electrical machines is a major factor that can adversely impact the performance and health conditions of these machines. These effects need to be minimized to make them competitive with currently operational machines in the industry. It can be done by performing a thorough thermal analysis of the prototype during the design process and proper online thermal monitoring of the machine during the operation stage. Thermal modelling is a powerful tool for achieving such goals in both cases. This paper aims to review the state-of-the-art of thermal modelling techniques and provide a detailed comparison of them in PM machines. The fundamental concepts of heat transfer and sources of heat in PM machines are first discussed. Then, different thermal modelling techniques, including thermal subdomain models (TSMs), lumped parameter thermal networks (LPTNs), finite element models (FEMs), computational fluid dynamics (CFD), reduced order models (ROMs), and hybrid thermal models (HTMs) are introduced and compared. Finally, the utilization of these models in the thermal design, control, and monitoring of PM machines is studied.

Abstract Image

永磁电机热建模技术综述
永磁电机由于其潜在的优点而越来越受到业界的关注。电机的高温水平是影响这些机器性能和健康状况的一个主要因素。这些影响需要最小化,使其与行业中目前运行的机器竞争。这可以通过在设计过程中对原型进行彻底的热分析,并在运行阶段对机器进行适当的在线热监测来实现。在这两种情况下,热建模是实现这一目标的有力工具。本文旨在回顾最新的热建模技术,并提供了详细的比较,他们在PM机器。首先讨论了永磁机械中传热和热源的基本概念。然后,介绍并比较了不同的热建模技术,包括热子域模型(TSMs)、集总参数热网络(lptn)、有限元模型(fem)、计算流体动力学(CFD)、降阶模型(ROMs)和混合热模型(HTMs)。最后,研究了这些模型在永磁机床热设计、控制和监测中的应用。
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来源期刊
Iet Science Measurement & Technology
Iet Science Measurement & Technology 工程技术-工程:电子与电气
CiteScore
4.30
自引率
7.10%
发文量
41
审稿时长
7.5 months
期刊介绍: IET Science, Measurement & Technology publishes papers in science, engineering and technology underpinning electronic and electrical engineering, nanotechnology and medical instrumentation.The emphasis of the journal is on theory, simulation methodologies and measurement techniques. The major themes of the journal are: - electromagnetism including electromagnetic theory, computational electromagnetics and EMC - properties and applications of dielectric, magnetic, magneto-optic, piezoelectric materials down to the nanometre scale - measurement and instrumentation including sensors, actuators, medical instrumentation, fundamentals of measurement including measurement standards, uncertainty, dissemination and calibration Applications are welcome for illustrative purposes but the novelty and originality should focus on the proposed new methods.
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