风电一体化及其对电力系统运行的影响

T. Gjengedal
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引用次数: 29

摘要

风力发电是目前世界上发展最快的能源。到2002年底,全世界安装了超过31000兆瓦的容量。挪威是欧洲最适合使用风力发电的国家之一,几个大型风力发电场获得了特许权。在整合大规模风力发电时需要特别关注。本文重点研究了不同风力发电技术的暂态稳定性及其应用。给出了三种不同技术的仿真结果,结果表明,不同的技术对故障后的响应有很大的不同。感应发电机出现故障后无法恢复稳定工作点的问题,而另外两个发电机在故障清除后可以继续风电场的全面运行。在单个风车上应用智能阻尼算法,可以改善系统中摆动的阻尼。将进行进一步的工作,以调查这种控制办法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of wind power and the impact on power system operation
Wind power is currently the fastest growing energy source in the world. At the end of 2002, more than 31000 MW capacity were installed world wide. Norway is one of the best-situated European countries for using wind power, and several large scale wind farms are given concession. Special focus is needed when integrating large scale wind power. This paper has focused on transient stability and application of different wind turbine technologies. Results from simulations of three different technologies have been presented, and the results show that the responses after faults are very different depending on technology. The induction generator led to problems with regaining a stable operating point after fault, while the two other could continue full operation of the wind farm after the fault had been cleared. When applying intelligent damping algorithms at the individual windmills improved damping of swings in the system can be achieved. Further work will be carried out in order to investigate such control schemes.
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