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Structure optimization of rotor supporting of permanent magnet direct drive synchronous generators for large wind turbine based on genetic algorithm and finite element method

机译:基于遗传和有限元的大型风力发电机永磁直驱同步发电机转子支承结构优化。

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As wind turbines increase their power rating, the size and mass grows as well. The higher reliability is demanded in order to minimize the maintenance. Permanent magnet direct drive (PMDD) synchronous generators are a good solution since they omit the gearbox. While the large generator mass has been also a key difficult problem limiting the practical use of PMDD generator, which makes them difficult to build, transport and install. In this paper, the rotor supporting structure of a 7MW PMDD generator is optimized by combining finite element method with genetic algorithm (GA) in order to improve the optimization efficiency. In this optimization function, it takes the minimum weight as the objective, the structure parameters of rotor supporting as the key design variables, and the deflection as the constraint condition. Comprehensive simulations and comparisons demonstrate that the method is very feasible and efficient, which could give good reference to the structural optimization in practice.
机译:随着风力涡轮机增加其额定功率,尺寸和质量也随之增加。为了使维护最小化,要求更高的可靠性。永磁直驱(PMDD)同步发电机是一个很好的解决方案,因为它们省去了变速箱。尽管较大的发电机质量也是限制PMDD发电机实际使用的关键难题,但使它们难以制造,运输和安装。通过结合有限元方法和遗传算法(GA)对7MW PMDD发电机的转子支撑结构进行优化,以提高优化效率。在该优化函数中,以最小的重量为目标,以转子支撑的结构参数为主要设计变量,以挠度为约束条件。综合仿真和比较表明,该方法是可行且高效的,可为实际的结构优化提供参考。

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