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Optimal power allocation strategy for black start in VSC-MTDC systems considering dynamic impacts

机译:考虑动态影响的VSC-MTDC系统中黑色开始的最佳功率分配策略

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The ability of voltage source converters (VSCs) to restore blackout grid has been widely accepted based on their abilities in flexible and independent power control. However, the traditional literature only studied the case of a two-terminal hybrid system in which all required black start (BS) power is provided by a single healthy AC grid. Meanwhile, the dynamic changes at the sending end, including AC grid and converter, are not considered. In this paper, an optimal power allocation strategy is proposed to perform BS in the VSC-based multi-terminal direct current (VSC-MTDC) systems. The new strategy ensures that all the healthy AC grids can cooperate to transfer BS power together to the blackout grid. Thus, each grid only needs to provide a proportion of the required power. Furthermore, since the grids and converters in practical VSC-MTDC projects are generally limited to small sizes, the capacities together with main dynamic characteristics are also considered in the new strategy. By reasonably setting the optimization objective and constraints, the overall dynamic impacts can be significantly reduced, and the stability of AC grids and converters can be guaranteed. Finally, the comparison tests on a typical four terminal system verify the feasibility and effectiveness of the proposed method.
机译:基于灵活和独立功率控制的能力,广泛接受电压源转换器(VSC)恢复遮光网格的能力。然而,传统文献仅研究了双端子混合系统的情况,其中所有必需的黑色开始(BS)功率由单个健康的AC网格提供。同时,不考虑发送端的动态变化,包括AC电网和转换器。在本文中,提出了一种最佳功率分配策略在基于VSC的多终端直流(VSC-MTDC)系统中执行BS。新策略可确保所有健康的AC电网都可以配合将BS功率转移到遮光网格。因此,每个网格只需要提供所需功率的比例。此外,由于实际VSC-MTDC项目中的电网和转换器通常限于小尺寸,因此在新策略中也考虑了与主要动态特性的能力。通过合理地设置优化目标和约束,可以显着降低整体动态冲击,可以保证AC电网和转换器的稳定性。最后,典型的四个终端系统上的比较测试验证了所提出的方法的可行性和有效性。

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