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Analysis of requirements in insular grid codes for large-scale integration of renewable generation

机译:分析可再生能源大规模整合的岛网电网法规的要求

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Large-scale deployment of renewables in island power systems is attracting local attention of grid operators as a way of reducing fuel fossil consumption. Planning a grid based on renewable power plants poses serious challenges to the normal operation of a power system, namely on frequency and voltage stability. Regardless of its inherent problems, there is a consensus that in a future not far away, the green energy could supply most of local needs with less production based on fuel burning. In past grid code compliance, wind turbines did not require services for supporting grid operation. To shift to large-scale integration of renewables, the island grid code should incorporate a new set of requirements in order to regulate the inclusion of these services. Hence, this paper focuses on grid code requirements for large renewable energy integration based distributed generation in island power systems. The paper also discusses additional requirements such as “virtual” wind inertia for improving regulation capability of wind farms and electric energy storage applications for better renewable generation performance. Moreover, a comparative analysis of insular grid code compliance to these requirements in European context is presented.
机译:作为减少燃料化石消耗的一种方法,在岛上电力系统中大规模部署可再生能源正吸引着当地电网运营商的关注。基于可再生能源发电厂的电网规划对电力系统的正常运行提出了严峻挑战,即频率和电压稳定性。不管其内在的问题如何,人们都一致认为,在不远的将来,绿色能源可以满足大多数当地需求,而基于燃料燃烧的生产量却更少。在过去的电网规范合规中,风力涡轮机不需要支持电网运行的服务。为了转向大规模整合可再生能源,岛屿电网法规应纳入一套新的要求,以规范这些服务的纳入。因此,本文重点关注岛上电力系统中基于大型可再生能源集成的分布式发电的电网规范要求。本文还讨论了其他要求,例如“虚拟”风惯性以提高风电场的调节能力,以及电能存储应用以提高可再生能源发电性能。此外,在欧洲范围内对岛式网格代码符合这些要求的情况进行了比较分析。

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