Electrical Machines Winding Technology: Latest Advancements for Transportation Electrification

Технология обмоток электрических машин: последние достижения для электрификации транспорта
Ahmed Selema, Mohamed N. Ibrahim, Peter Sergeant
2022-07-12

additive manufacturingelectrical machine windingstransportation electrificationwinding losseswinding topologies
The ever-increasing demand for higher-power dense electrical machines has resulted in different electrical, mechanical, and thermal stresses, which can eventually cause machine failure. For this reason, the management of stresses and losses must be thoughtfully investigated to have a highly reliable electrical machine. The literature agrees that winding losses are the dominant loss mechanism in many electrical machines. However, statements vary on how to mitigate these losses along with the aforementioned stresses. To avoid winding failure, a study of the various winding topologies would allow for a better consideration of the challenges and limitations in the performance of different electrical machines. To this aim, this paper introduces a comprehensive review for different winding topologies. Many reported cases in the literature are summarized and compared. Moreover, the utilization of additive manufacturing (AM) in the production of the machine windings is presented, showing a high level of maturity of this emerging technology. Finally, different challenges facing the design of machine windings are introduced including the AC high frequency losses, thermal management, mechanical and acoustic problems, insulation aging, automated production, and winding manufacturability.
1
Additive manufacturing for producing electrical-machine windings is reported to have reached a high level of technological maturity.
2
Major remaining challenges include high-frequency AC losses, thermal management, insulation aging, automated production, and winding manufacturability.
3
Reliable winding design must address electrical, thermal, mechanical, and acoustic stresses that can contribute to machine failure.
4
The review comprehensively compares winding topologies to clarify their performance, challenges, and limitations for transportation electrification.
5
Winding losses are identified as the dominant loss mechanism in many high-power-density electrical machines.

Electrical machine windings and winding topologies for transportation electrification

Winding-loss mitigation, stress management, performance limitations, and manufacturing challenges, including additive manufacturing, in high-power-density electrical machines

Publication Details
Publication Date
2022-07-12
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Authors
Ahmed Selema
Mohamed N. Ibrahim
Peter Sergeant
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