双速复合电机的优化设计

Yongming Xu, D. Meng, Jiabin Wen
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引用次数: 0

摘要

为了提高石油采油机械的效率,本文研制了一种双速复合电机。复合电机由同一轴上的一次单元电机和辅助单元电机组成,可提供六个等级的功率。这是通过相移变极和结合两个单元电机的操作来实现的。在设计时必须综合考虑四种单一工况和两种组合工况的性能。根据非线性规划理论,建立了复合电机优化设计的数学模型,并结合电机设计的实际,对模拟退火算法进行了改进。将该模型和算法应用于实际计算,取得了良好的效果。应用表明,该方法可以加快优化的搜索过程,对实际工程更有实用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The optimal design for the compound motor with double speeds
In order to increase the efficiencies of petroleum production machines, a compound motor with double speeds has been developed in this paper. The compound motor is composed of a primary unit motor and an auxiliary unit motor in the same shaft, and can provide six grades of power. This is achieved by phase shift pole-changing, and by combining the operations of two unit motors. The performances in the four single operating states, and the two combining operating states must be taken together in the design. The mathematical model of the optimal design for the compound motor was established in the light of the nonlinear programming theory, and the Simulated Annealing Algorithm (SAA) is improved in this paper according to the practice of motor design. The model and the algorithm are applied to the practical calculation and excellent results have been achieved. The application shows that the method used in the paper can speed up the searching process of the optimization and thus be more useful for practical engineering.
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