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Placement of virtual inertia from HVDC terminals based on a frequency deviation index

机译:基于频率偏差指数,从HVDC终端放置虚拟惯性

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This paper presents an approach for assessing the most suitable locations to provide virtual inertia by HVDC converters. A frequency deviation index quantifying the maximum distance in Hz from each bus in the power system to the Center of Inertia (COI) is utilized as the starting point of the assessment. From this index, the buses that are exhibiting the largest relative frequency transients in response to power disturbances are identified as candidates for introducing virtual inertia. Then, the most suitable placement of virtual inertia contributions from existing HVDC terminals or alternative connection points for future HVDC links can be assessed. An example is presented by a simulation study based on a 44-bus simplified model of the Nordic power system implemented in DIgSILENT PowerFactory. This study shows how the overall transient behaviour of the frequency can be improved by operating an HVDC terminal as a Virtual Synchronous Machine (VSM) for providing virtual inertia to a bus with high frequency deviation index. The results also confirm how the VSM-based control can improve the frequency transients in terms of frequency nadir and rate-of-change-of-frequency.
机译:本文提出了一种评估最合适的地点,通过HVDC转换器提供虚拟惯性的方法。将电力系统中的每个总线的Hz中的最大距离量化到惯性中心(COI)的频率偏差指数用于评估的起点。从该索引来看,响应于电力干扰响应于电力干扰而呈现最大相对频率瞬变的总线被识别为用于引入虚拟惯性的候选者。然后,可以评估来自现有HVDC终端的虚拟惯性贡献的最合适的放置,或者可以评估未来HVDC链路的替代连接点。基于Digsilent PowerFactory实现的北欧电力系统的44总线简化模型,通过仿真研究提出了一个例子。该研究表明,通过操作HVDC端子作为虚拟同步机(VSM),可以改善频率的整体瞬态行为如何改进,用于向具有高频偏差指数的总线向总线提供虚拟惯性。结果还证实了基于VSM的控制如何如何在频率Nadir和频率变化率方面提高频率瞬变。

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