Field Validation of a Doubly Fed Induction Generator (DFIG) Model

S. Auddy, R. Varma, M. Dang
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引用次数: 15

Abstract

With the increased penetration of wind power it is important to carefully asses the impact of grid integration of wind turbine generators. Accurate wind turbine generator models are required for this purpose. Variable speed wind turbine generators are widely being interconnected to the grid to ensure optimum power capture from the wind energy. In this paper, an attempt is made to validate a variable speed doubly fed induction generator model with the field test results. The GE 1.5 MW wind turbine generator is a good example of doubly fed induction generator configuration which is already implemented in PSS/E software. These wind turbine generators are actually installed in the AIM Erie Shore Wind Generating Station of Hydro One Network Inc. A series of tests were performed in this wind farm in 2006 winter. A few of the tests are simulated in PSS/E to validate the existing models. Simulation results are found to be in good agreement with the field test results confirming the accuracy of the GE 1.5 MW wind turbine generator (WTG) models of PSS/E wind. The reasons for the mismatch between the simulation and actual results are also pointed out.
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双馈感应发电机(DFIG)模型的现场验证
随着风力发电渗透率的不断提高,对风力发电机组并网的影响进行认真评估是十分重要的。为此需要精确的风力发电机模型。变速风力发电机被广泛地连接到电网,以确保从风能中获得最佳的电力。本文尝试用现场试验结果对变速双馈感应发电机模型进行验证。GE 1.5兆瓦风力发电机是双馈感应发电机配置的一个很好的例子,已经在PSS/E软件中实现。这些风力发电机实际上安装在Hydro One网络公司的AIM伊利海岸风力发电站。2006年冬季在该风电场进行了一系列试验。在PSS/E中对部分测试进行了仿真,以验证现有模型的有效性。仿真结果与现场试验结果吻合较好,验证了GE 1.5 MW PSS/E风力发电机组模型的准确性。并指出了仿真结果与实际结果不匹配的原因。
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