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Optimal design of hydro permanent magnet synchronous generators for improving annual cycle efficiency

机译:高压永磁同步发电机的最优设计,提高年循环效率

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In hydropower generation, the combination of permanent magnet generators and power electronic converters allows for variable speed operation and brings many advantages to the plant. Efficiency optimization is a valuable goal for the generator design. However, traditional optimization methods only optimize the rated efficiency without considering the overall efficiency improvement in the annual cycle. To overcome this drawback, this paper proposes a new design optimization method for permanent magnet synchronous generators in hydropower plants, which helps to improve the combined operating efficiency during the dry, normal, and rainy hydrological periods. First, the pre-operating conditions of the generator are obtained by studying the upstream periodic hydrological data and the optimal operating trajectory of the turbine. Secondly, an analytical model of generator efficiency under different hydrological conditions is developed based on an accurate subdomain model and weighted as the objective function. Furthermore, an improved genetic algorithm is proposed to solve the objective function to obtain the generator structural parameters. Finally, the improvement of the annual cycle efficiency of the generator is verified by simulation and experimental tests under different load conditions.
机译:在水电站中,永磁发电机和电力电子转换器的组合允许变速运行并为植物带来许多优点。效率优化是发电机设计的宝贵目标。然而,传统的优化方法仅优化额定效率而不考虑年度周期的整体效率。为了克服该缺点,本文提出了一种新的水电站永磁同步发电机设计优化方法,有助于提高干燥,正常和多雨水文时期的组合操作效率。首先,通过研究上游周期性水文数据和涡轮机的最佳操作轨迹来获得发电机的预操作条件。其次,基于精确的子域模型开发了不同水文条件下发电机效率的分析模型,并加权作为目标函数。此外,提出了一种改进的遗传算法来解决目标函数以获得发电机结构参数。最后,通过不同负载条件下的模拟和实验测试验证了发电机年循环效率的提高。

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