Fast and accurate methodologies for the eddy current losses analysis in axially laminated rotor of synchronous reluctance machines under different loads

IF 1.5 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Electric Power Applications Pub Date : 2024-05-22 DOI:10.1049/elp2.12450
Maksim A. Sitnikov, Floran Martin, Anouar Belahcen
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Abstract

The authors present two fast and accurate methodologies for the computation of eddy current losses in the axially laminated rotor of a synchronous reluctance machine. The methodologies are based on different combinations of the finite element method in time and frequency domains with 2D and 3D formulations. First, a comparative study of the 2D and 3D formulations for loss calculation is presented, considering various load angles of the machine to illustrate the problem of eddy-current losses in this type of machines and its dependence on the load angle. The influence of the iron saturation on the loss calculation is also evaluated in these computations. A novel correction factor based on the computations at two load angles is proposed to convert the losses computed from a 2D model to match those computed from a 3D model. For the sake of generality, investigations are also conducted for various thicknesses of the lamination layers and different machine lengths, and an analytical method to describe the dependency of eddy-current losses on the load angle of the machine is introduced. Moreover, a simplified method is proposed for modelling eddy currents in the frequency domain and calculating losses in an axially laminated structure based solely on the results of a magnetostatic solution. The results obtained by the simplified model demonstrate excellent agreement with the full 3D magneto-dynamic simulation. Overall, the findings contribute to understanding and accurately characterising the eddy current losses in axially laminated rotors, offering potential insights for designing and optimising axially laminated synchronous reluctance electric machines.

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不同负载下同步磁阻机轴向叠片转子涡流损耗的快速准确分析方法
作者介绍了计算同步磁阻机轴向叠片转子中涡流损耗的两种快速而精确的方法。这两种方法基于时域和频域有限元法与二维和三维公式的不同组合。首先,对二维和三维损耗计算公式进行了比较研究,考虑了机器的各种负载角,以说明这类机器的涡流损耗问题及其与负载角的关系。在这些计算中,还评估了铁饱和对损耗计算的影响。根据两个负载角度的计算结果,提出了一个新的修正系数,用于将二维模型计算出的损耗转换为三维模型计算出的损耗。为通用起见,还对不同厚度的层压板和不同长度的机器进行了研究,并引入了一种分析方法来描述涡流损耗与机器负载角度的关系。此外,还提出了一种简化方法,用于在频域中模拟涡流,并仅根据磁静力解决方案的结果计算轴向层压结构中的损耗。简化模型得出的结果与全三维磁动力模拟结果非常吻合。总之,研究结果有助于理解和准确描述轴向层叠转子中的涡流损耗,为设计和优化轴向层叠同步磁阻电机提供了潜在的启示。
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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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