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Design and Analysis of Counter-Rotating Dual Rotors Permanent Magnet Compensated Pulsed Alternator

机译:对转双转子永磁补偿脉冲交流发电机的设计与分析

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摘要

This paper presents the methodology for the electromagnetic design and analysis of air-cored pulsed alternators, which is based on a new type counter-rotating dual rotor permanent magnet compensated pulsed alternator (CRDR-PMCPA). The application of the CRDR topology in the field of CPA is used to decrease the large transient torque transmitted to the combat vehicle platform. Based on the air-cored structures and the pulse operation duty, the special design flowchart was presented. Halbach array permanent magnet rotors were designed for using the characteristic of unilateral magnetism gathering in the CRDR-PMCPA. The parameters of the air-cored dual rotors pulsed alternators were calculated and compared by the analytical method and finite-element analysis (FEA) method (FEM). The inductance of the armature winding is important for obtaining the pulsed current waveform accurately. The inductance of the armature winding is calculated by the numerical method and FEM, respectively. The mechanical design of the CRDR-PMCPA was done. The transient discharge process was simulated in detail for evaluating the design performance, and the operation risks of permanent magnets were also evaluated. The special problems for dual rotors rotating were investigated. The electromagnetic design and analysis is the base for accurately calculating the transient thermal rise and mechanical impulse aspects. Thermal and structural analysis was done by the multiphysics coupling analysis. And the results were used to evaluate the demagnetization risk of permanent magnets and evaluate the safety of the whole machine and the discharge system.
机译:本文介绍了基于新型反向旋转双转子永磁补偿脉冲交流发电机(CRDR-PMCPA)的空心脉冲交流发电机的电磁设计和分析方法。 CRDR拓扑在CPA领域中的应用被用于减少传递到战斗车辆平台的大瞬态扭矩。基于空芯结构和脉冲工作占空比,给出了特殊的设计流程图。设计了Halbach阵列永磁体转子,以利用CRDR-PMCPA中单向磁性聚集的特性。通过分析方法和有限元分析(FEA)方法(FEM)计算并比较了空心双转子脉冲交流发电机的参数。电枢绕组的电感对于准确获得脉冲电流波形很重要。电枢绕组的电感分别通过数值方法和FEM计算。完成了CRDR-PMCPA的机械设计。详细模拟了瞬态放电过程,以评估设计性能,并评估了永磁体的运行风险。研究了双转子旋转的特殊问题。电磁设计和分析是准确计算瞬态热上升和机械脉冲方面的基础。热和结构分析是通过多物理场耦合分析完成的。然后将结果用于评估永磁体的退磁风险,并评估整个机器和放电系统的安全性。

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