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Optimal Design of Large Permanent Magnet Synchronous Generators

机译:大型永磁同步发电机的优化设计

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High power machine has become a large market for wind power and ship propulsion electric, among other applications. Since the size of these machines is much larger than conventional industrial ones, optimum design must be considered in order to reduce the material cost and increase profitability. In this paper, a simple analytic optimization algorithm is used to maximize the apparent airgap power transferred under tangential stress constraint. In this approach, close related expressions between the main design variables, operational restrictions, and external dimensions are derived to build the mathematical structure of the optimization process. To improve the torque capacity estimation of the designed machine, a correction procedure, based on the previous result, is used to remove the idealizations considered for the initial design. Close agreement with the finite element analysis results are found with this approach, which is based on analytical method.
机译:在其他应用中,高功率机器已成为风能和船舶推进电力的大型市场。由于这些机器的尺寸比传统工业机器大得多,因此必须考虑最佳设计,以降低材料成本并提高利润。本文采用一种简单的解析优化算法来最大化切向应力约束下传递的视在气隙功率。在这种方法中,可以得出主要设计变量,操作限制和外部尺寸之间的密切相关表达式,以构建优化过程的数学结构。为了改善所设计机器的扭矩容量估计,基于先前的结果的校正过程用于消除初始设计所考虑的理想化。该方法基于分析方法,与有限元分析结果非常吻合。

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