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Empirical analysis on model and parameters of grid-connected Direct-driven Wind Turbine Generators in transient stability computation

机译:并网直驱风力发电机暂态稳定计算模型与参数的实证分析

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摘要

The precision of model and parameter of Wind Turbine Generator are of crucial importance for the research on the influence of grid-connected wind power generation on power grid. In order to research dynamic behaviour of grid-connected Direct-driven Wind Turbine Generator(DWTG) during large disturbance and obtain parameters of DWTG that can reflect actual condition. Large scale disturbance test located in Jiuquan wind power base in Gansu Province is performed by the Northwest of China Power Grid Company. Base on disturbance test data of wind farm, applying the Electromechanical transient model of DWTG in Power System Analysis Software Package (PSASP) platform, the empirical analysis on model and parameters of DWTG simulation is conducted. By full use of the improved control strategy of the DWTG model, key parameters of the wind turbine are proposed and the sensitivity analyses on them are carried out. According to on-site testing data, related parameters of the simulation platform are modified to make the simulation curve more approximating to the measured curve, thus the precision of DWTG model is improved.
机译:风力发电机的模型和参数的精度对于研究并网风力发电对电网的影响至关重要。为了研究并网直驱风力发电机在大扰动情况下的动态行为,获得能反映实际情况的DWTG参数。中国电网公司西北部在甘肃酒泉风电基地进行了大规模的扰动试验。基于风电场的扰动测试数据,在电力系统分析软件包(PSASP)平台上应用DWTG的机电暂态模型,对DWTG仿真模型和参数进行了实证分析。通过充分利用DWTG模型的改进控制策略,提出了风机的关键参数,并对其进行了灵敏度分析。根据现场测试数据,修改了仿真平台的相关参数,使仿真曲线更接近实测曲线,从而提高了DWTG模型的精度。

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