为可再生能源发电机提供更智能的电网连接方式

R. Currie, G. Ault, C. Foote, N. McNeill, A. Gooding
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引用次数: 35

摘要

可再生能源和分布式发电的增长正在推动输电和配电网络规划和运营方法的逐步演变。主动网络管理(ANM)领域的智能电网技术有望在短期内促进可再生能源和分布式发电机与电网的连接。随着时间的推移,其他智能电网技术有望出现,以实现向低碳经济的过渡。ANM方案出现在潮流管理和电压管理领域,是许多国际研究和发展的主题。本文提供了奥克尼智能电网的概述,其中涉及到一种新的ANM方案的应用,以增加可再生能源发电机连接到现有的奥克尼网络。回顾了迄今为止ANM方案的性能以及从多生成器、多网络约束ANM方案的开发和部署中获得的经验教训。此外,作者还讨论了ANM方案实现近期部署所需的特性和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Smarter ways to provide grid connections for renewable generators
The growth in renewable and distributed generation is driving the gradual evolution of the methods used to plan and operate transmission and distribution networks. Smart Grid technologies in the area of Active Network Management (ANM) are expected to facilitate the increased connection of renewable and distributed generators to electricity networks in the near-term. Other Smart Grid technologies are expected to emerge over time to enable the transition to a low carbon economy. ANM schemes are emerging in the areas of power flow management and voltage management and are the subject of much international research and development. This paper provides an overview of the Orkney Smart Grid, which involves the application of a novel ANM scheme to enable increased renewable generator connections to the existing Orkney network. A review of ANM scheme performance to date and lessons learned from the development and deployment of a multiple generator, multiple network constraint ANM scheme is presented. In addition, the authors discuss the desirable characteristics and challenges for ANM schemes to achieve near-term deployment.
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