风电馈入对电力系统小信号稳定性的影响

Hasan Ul Banna, A. Luna, Shaoqing Ying, H. Ghorbani, P. Rodríguez
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引用次数: 21

摘要

将大量风能整合到互联电力系统中,对整个电力系统的安全、可靠和经济运行产生了担忧。因此,研究风电输入对电力系统动态性能的影响就显得十分必要。研究了进给风功率大对转子振荡稳定性的影响。深入研究了风电场目前使用的风力发电机组类型、风电场在互联电力系统中的最佳位置、风电的可靠优化调度以及线路拥堵程度。利用MATLAB/Simulink,利用Kundur的两区域网络模型研究了上述对整个系统的影响。一些关键结果表明,风电场的阻尼特性在很大程度上取决于电网中的互联位置和最佳风能调度。增加风能的穿透性通常可以改善区域间振荡的阻尼。此外,减小弱连接线上的应力也改善了振荡的区域间模式。因此,通过对这些影响的调查研究,可以为新建风电项目的规划提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of wind energy in-feed on power system small signal stability
Integration of large amount of wind energy in an interconnected power system creates concerns about secure, reliable and economical operation of the entire power system. So it becomes very necessary to investigate the impacts of wind power infeed on the dynamic behavior of the power system. This paper presents the impacts of large amount of wind power in feed on the rotor oscillatory stability. Wind turbine generator types currently employed in wind farms, optimal location of the wind farms in the interconnected power system, reliable optimal dispatch of the wind power and the degree of tie line congestion have been thoroughly investigated. Kundur's two area network model has been utilized to study the mentioned impacts on the overall system using MATLAB/Simulink. Some of the key results show that the damping characteristics of the wind farms critically depend on the location of interconnection in the network and the optimal wind energy dispatch. Increasing the penetration of the wind energy generally improves the damping of the inter area oscillations. Moreover, reducing stress on the weak tie lines also improves the inter area mode of oscillation. So with the investigation of these impacts this study is helpful for the planning of new wind power projects.
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