论文标题

基于电网的逆变器风力涡轮机发电机:全面审查,比较分析和建议

Grid-Forming Inverter-based Wind Turbine Generators: Comprehensive Review, Comparative Analysis, and Recommendations

论文作者

Nguyen, Thai-Thanh, Vu, Tuyen, Paudyal, Sumit, Blaabjerg, Frede, Vu, Thanh Long

论文摘要

在基于逆变器的风力涡轮机发电机(WTGS)的控制之后,风力发电的高渗透能力较高,削弱了电网,从而挑战了电力系统的稳定性。网格形成(GFM)控件是可以解决此类稳定问题的新兴技术。文献中已经开发了GFM逆变器的许多方法。但是,他们对WTG的申请尚未得到彻底探索。由于WTG需要合并多个控制功能才能在不同的操作区域可靠地操作,因此GFM控制应适当为WTG开发。本文介绍了WTGS的GFM控件的评论,其中涵盖了GFM控件中的最新进展,包括多环和单循环GFM,基于虚拟的基于机器的GFM以及基于虚拟惯性控制的GFM。然后,对这些基于GFM的WTG进行了有关正常和异常工作条件的比较研究以及黑色启动能力。这些GFM类型的控制参数经过正确设计和优化,以实现公平的比较。此外,讨论了将这些GFM控件应用于风力涡轮机的挑战,其中包括DC-LINK电压控制策略的影响以及当前的饱和算法对GFM控制性能,黑色启动能力和自主操作能力的影响。最后,提出了基于GFM的风力涡轮机的建议和未来发展,以提高电源系统的可靠性。

High penetration of wind power with conventional grid following controls for inverter-based wind turbine generators (WTGs) weakens the power grid, challenging the power system stability. Grid-forming (GFM) controls are emerging technologies that can address such stability issues. Numerous methodologies of GFM inverters have been developed in the literature; however, their applications for WTGs have not been thoroughly explored. As WTGs need to incorporate multiple control functions to operate reliably in different operational regions, the GFM control should be appropriately developed for the WTGs. This paper presents a review of GFM controls for WTGs, which covers the latest developments in GFM controls and includes multi-loop and single-loop GFM, virtual synchronous machine-based GFM, and virtual inertia control-based GFM. A comparison study for these GFM-based WTGs regarding normal and abnormal operating conditions together with black-start capability is then performed. The control parameters of these GFM types are properly designed and optimized to enable a fair comparison. In addition, the challenges of applying these GFM controls to wind turbines are discussed, which include the impact of DC-link voltage control strategy and the current saturation algorithm on the GFM control performance, black-start capability, and autonomous operation capability. Finally, recommendations and future developments of GFM-based wind turbines to increase the power system reliability are presented.

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