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Grid-forming control strategies for black start by offshore wind power plants

机译:近海风电厂的黑色开始的网格形成控制策略

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Large-scale integration of renewable energy sources with power-electronic converters is pushing the power system closer to its dynamic stability limit. This has increased the risk of wide-area blackouts. Thus, the changing generation profile in the power system necessitates the use of alternate sources of energy such as wind power plants, to provide black-start services in the future. However, this requires grid-forming and not the traditionally prevalent grid-following wind turbines. This paper introduces the general working principle of grid-forming control and examines four of such control schemes. To compare their performance, a simulation study has been carried out for the different stages of energization of onshore load by a high-voltage direct-current (HVDC)-connected wind power plant. Their transient behaviour during transformer inrush, converter pre-charging and de-blocking, and onshore block-load pickup has been compared and analysed qualitatively to highlight the advantages and disadvantages of each control strategy.
机译:具有电力电子转换器的可再生能源的大规模集成正在推动电源系统更靠近其动态稳定极限。这增加了广域停电的风险。因此,电力系统中的改变的生成简档需要使用诸如风力发电厂的替代能源来源,以便将来提供黑色启动服务。然而,这需要网格形成,而不是传统上普遍的电网之后的风力涡轮机。本文介绍了网格形成控制的一般工作原理,并检查了四种这样的控制方案。为了比较它们的性能,通过高压直流(HVDC)的风电厂对陆上负荷的不同阶段进行了模拟研究。在变压器涌入,转换器预充电和脱块期间的瞬态行为已经进行了比较和陆上块载荷拾取器,并分析,以突出每个控制策略的优缺点。

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