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Insulation Design and Optimization of Laminated Busbar for More Electric Aircraft Motor Drive under High Altitude and Depressurized Environments

机译:高海拔高度和减压环境下更多电气飞机电机驱动的层压母线绝缘设计与优化

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More electric aircrafts (MEA) recently attracts increasing attention due to improvements to efficiency, reduce weight, fuel cost, and carbon emissions. High-specific-power machines, and corresponding integrated motor drives have been identified as the crucial enabling technology for the realization of more electric aircraft propulsion. Such a concept requires converter working under depressurized environments, which poses challenges to the electric insulation due to partial discharge (PD). This threatens the reliability of the drive system. This paper proposes an insulation design and optimization methodology for a laminated busbar in a 450-kVA electric-aircraft motor drive. The design aims to avoid any partial discharge in the insulation and also achieves optimized busbar stray inductance. To achieve the targets, partial discharge inception voltage (PDIV) with respect to air pressure was obtained by the experiment, and the experimental results were used as PD -free design criteria in electric field simulation of the laminated busbar. Then, the insulation structure regarding insulation material selection and thickness selection was optimized by taking both the PD-free criteria and parasitic inductance into consideration. The proposed design procedure provides valuable references for future laminated busbar design, which is used for the MEA system.
机译:更多的电气飞机(MEA)最近由于提高效率,减少重量,燃料成本和碳排放而引起的越来越受到关注。高比电机和相应的集成电机驱动器被确定为实现更多电气飞机推进的关键能力技术。这种概念需要在减压环境下工作的转换器,这对由于局部放电(PD)引起电绝缘的挑战。这威胁到驱动系统的可靠性。本文提出了450 kVA电气电机驱动器中层叠母线的绝缘设计和优化方法。该设计旨在避免绝缘中的任何局部放电,并且还达到优化的母线杂散电感。为了实现目标,通过实验获得了相对于空气压力的局部放电初始电压(PDIV),并且实验结果用作层压母线的电场模拟中的PD -Free设计标准。然后,通过考虑无PD的标准和寄生电感来优化关于绝缘材料选择和厚度选择的绝缘结构。该建议的设计程序为未来层压母线设计提供了有价值的参考,用于MEA系统。

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