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Validation of Fixed Speed Induction Generator Models for Inertial Response Using Wind Farm Measurements

机译:使用风电场测量验证定速感应发电机模型的惯性响应

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This paper outlines the use of phasor measurement unit (PMU) records to validate models of fixed speed induction generator (FSIG)-based wind farms during frequency transients. Wind turbine manufacturers usually create their own proprietary models which they can supply to power system utilities for stability studies, subject to confidentiality agreements. However, it is desirable to confirm the accuracy of supplied models with measurements from the particular installation, in order to assess their validity under real field conditions. This is prudent due to possible changes in control algorithms and design retrofits, not accurately reflected or omitted in the supplied model. One important aspect of such models, especially for smaller power systems with limited inertia, is their accuracy during system frequency transients. This paper, therefore, assesses the accuracy of FSIG models with regard to frequency stability, and hence validates a subset of the model dynamics. Such models can then be used with confidence to assess wider system stability implications. The measured and simulated response of a wind farm using doubly fed induction generator (DFIG) technology is also assessed.
机译:本文概述了在频率瞬变期间使用相量测量单位(PMU)记录来验证基于固定速度感应发电机(FSIG)的风电场的模型。风力发电机制造商通常会创建自己的专有模型,根据保密协议,他们可以将其提供给电力系统公用事业公司进行稳定性研究。但是,希望通过特定安装的测量结果来确认所提供模型的准确性,以便评估其在真实现场条件下的有效性。由于控制算法和设计改造的可能变化,在提供的模型中未准确反映或省略,因此应谨慎行事。这种模型的一个重要方面,尤其是对于惯性有限的小型电力系统而言,在系统频率瞬变过程中具有很高的准确性。因此,本文评估了FSIG模型在频率稳定性方面的准确性,从而验证了模型动力学的一部分。然后可以放心地使用此类模型来评估更广泛的系统稳定性。还评估了使用双馈感应发电机(DFIG)技术对风电场进行的测量和模拟响应。

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