Real-Time Emulation of Grid-Connected DFIG Wind Energy System with Model Validation from Sub-synchronous to Hyper-synchronous Operation under Unbalanced Conditions

Maximiliano F. Ferrari, Emilio C. Piesciorovsky, L. Tolbert
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Abstract

Previous work on real-time simulation of DFIGs have assumed that the generator model is valid over a wide range of operating speeds and for multiple grid voltage unbalances. However, this assumption has not been tested in the literature, which limits the accuracy of results obtained in both simulations and in hardware-in-the-loop (HIL) applications. To address this gap in the literature, this paper presents a preliminary model validation of the DFIG with iron losses and demonstrates the limitations of the model in accurately representing a physical DFIG machine under grid unbalanced operation. This paper implements all the required discrete models for real-time emulation of the DFIG on a field programmable gate array (FPGA), including: the dynamic model of the DFIG, rotor side converter (RSC), grid side converter (GSC), and aerodynamic and mechanical models. Also included are key implementation aspects of the hardware-testbed utilized for the model validation, which consists of a DFIG machine connected to a partial-scaled four-quadrant back-to-back power converter. The DFIG machine models utilized for this research are available to the public and can be accessed in a GitHub repository listed in the references.
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不平衡条件下并网DFIG风电系统亚同步到超同步运行的实时仿真及模型验证
以前的DFIGs实时仿真工作已经假设发电机模型在大范围的运行速度和多个电网电压不平衡情况下是有效的。然而,这一假设尚未在文献中得到验证,这限制了在模拟和硬件在环(HIL)应用中获得的结果的准确性。为了解决文献中的这一空白,本文提出了含铁损耗的DFIG的初步模型验证,并证明了该模型在准确表示电网不平衡运行下的物理DFIG机器方面的局限性。本文在现场可编程门阵列(FPGA)上实现了DFIG实时仿真所需的所有离散模型,包括:DFIG的动态模型、转子侧变换器(RSC)、栅格侧变换器(GSC)以及气动和力学模型。还包括用于模型验证的硬件试验台的关键实现方面,该试验台由连接到部分比例四象限背靠背功率转换器的DFIG机器组成。本研究使用的DFIG机器模型对公众开放,可以在参考文献中列出的GitHub存储库中访问。
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