双三相永磁同步电动机开路故障的振动抑制

IF 5.4 2区 工程技术 Q2 ENERGY & FUELS IEEE Transactions on Energy Conversion Pub Date : 2025-01-27 DOI:10.1109/TEC.2025.3534799
Wenxiang Zhao;Chen Wang;Jinghua Ji;Xinxing Zhang;Yanjun Yu
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摘要

双三相永磁同步电动机具有固有的容错能力。然而,对其故障状态下的振动特性研究却很少。在开路故障条件下,电枢磁动势的不平衡不可避免地导致了振动性能的恶化。本文对开路故障条件下的振动性能进行了分析。理论分析表明,振动发生在基频的偶倍处。为了抑制开路故障引起的振动,应使电枢磁动势达到与健康状态相同的水平。相电流基准的两部分可分别由不变磁动势原理确定。在开路故障条件下,只需改变谐波子空间中的基准电流即可抑制振动。该策略在实践中易于实施。一系列的实验结果验证了该方法的有效性。
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Vibration Suppression for Dual Three-Phase PMSM With Open-Circuit Fault
The dual three-phase permanent magnet synchronous motor (PMSM) is featured with intrinsic fault-tolerant capability. However, the vibration performance under the fault condition has rarely been investigated. The unbalanced armature magnetomotive force under the open-circuit fault condition results in the deteriorated vibration performance, inevitably. In this paper, the vibration performance under the open-circuit fault condition is analyzed. The theoretical analysis demonstrates that the vibration occurs at the even multiple of the fundamental frequency. In order to suppress the vibration due to the open-circuit fault, the same armature magnetomotive force as the healthy condition should be achieved. The two parts of phase current reference can be determined by the principle of invariant magnetomotive force, respectively. Only the current reference in harmonic subspace need to be changed to suppress the vibration under the open-circuit fault condition. The proposed strategy is easy to be implemented in practice. A series of experimental results are given to confirm the effectiveness of the proposed method.
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来源期刊
IEEE Transactions on Energy Conversion
IEEE Transactions on Energy Conversion 工程技术-工程:电子与电气
CiteScore
11.10
自引率
10.20%
发文量
230
审稿时长
4.2 months
期刊介绍: The IEEE Transactions on Energy Conversion includes in its venue the research, development, design, application, construction, installation, operation, analysis and control of electric power generating and energy storage equipment (along with conventional, cogeneration, nuclear, distributed or renewable sources, central station and grid connection). The scope also includes electromechanical energy conversion, electric machinery, devices, systems and facilities for the safe, reliable, and economic generation and utilization of electrical energy for general industrial, commercial, public, and domestic consumption of electrical energy.
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