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A new method for characterization of small capacity wind turbines with permanent magnet synchronous generator: An experimental study

机译:永磁同步发电机表征小容量风力发电机组的新方法:实验研究

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摘要

This work presents a new and useful method to dimension wind turbines and control systems and to optimize their mechanical design. This method allows determining the principal curves for characterizing a small capacity wind turbine designed with a Permanent Magnet Synchronous Generator (PMSG). For the wind turbine characterization it was considered the losses in the process of energy transformation in the wind rotor, electric generator and in the bridge rectifier. The equivalent electric model of the synchronous generator was used to determine the electric parameter performance. The work of the wind rotor was considered in its maximum power curve and the PMSG performance in the linear region of its magnetization curve. This leads to develop a new methodology for the complete wind turbine characterization from the nominal parameters of the wind rotor and the electric generator. This method also allows obtaining the power curves and the parameters of voltage, current and efficiency around the wind speed domain and angular speed in the wind rotor. The method was tested for small-capacity wind turbine (1 kW and 10 kW) performances and the numerical and experimental results are described.
机译:这项工作提出了一种新的有用的方法来确定风力涡轮机和控制系统的尺寸并优化其机械设计。该方法可以确定主要曲线,以表征设计有永磁同步发电机(PMSG)的小容量风力发电机。对于风轮机特性分析,可以考虑风电转子,发电机和桥式整流器中能量转换过程中的损失。同步发电机的等效电模型用于确定电参数性能。在最大功率曲线中考虑了风轮的功,在其磁化曲线的线性区域中考虑了PMSG性能。这导致根据风力转子和发电机的标称参数开发一种用于完整表征风力涡轮机的新方法。这种方法还可以获取功率曲线以及风速域周围的电压,电流和效率参数以及风轮中的角速度。测试了该方法的小容量风力涡轮机(1 kW和10 kW)性能,并描述了数值和实验结果。

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