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Review of the DC voltage coordinated control strategies for multi-terminal VSC-MVDC distribution network

机译:多终端VSC-MVDC分配网络的直流电压协调控制策略述评

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摘要

The multi-terminal voltage sourced converter medium-voltage DC (VSC-MVDC) distribution network has high prospects for future development, hence the proposed alternative for the AC distribution in commercial and industrial applications. However, a number of obstacles stand on its way in realising its immense potential in the modern power system. This study presents a review and focuses on the complexity of controlling DC voltage/power flow in the multi-terminal DC (MTDC) grids and the possible DC voltage coordinated control approaches aimed at identifying the suitable control strategies for the proposed MVDC distribution grids. Several centralised and distributed DC voltage control strategies for MTDC have been considered. In conclusion, the droop-based control strategies have been identified as reliable, flexible, and expandable with high dynamic performance and minimal communication needs in MTDC grids. These strategies are suitable and adaptable for stable and secure operation of the proposed multi-terminal MVDC distribution network. The study recommends a comparative study of the key DC voltage coordination control features of the droop-based control strategies using the multi-terminal VSC-MVDC distribution network dynamic model for future studies.
机译:多端电压源转换器中电压DC(VSC-MVDC)配送网络具有高前景的未来发展,因此建议商业和工业应用中AC分配的替代方案。然而,在现代电力系统中实现其巨大潜力,许多障碍站在途中。本研究提出了审查,并专注于控制多终端DC(MTDC)网格中的DC电压/功率流量的复杂性,以及可能的DC电压协调控制方法,旨在识别所提出的MVDC分布网格的合适控制策略。已经考虑了用于MTDC的几种集中和分布式直流电压控制策略。总之,基于下降的控制策略已被确定为可靠,灵活,可扩展,在MTDC网格中具有高动态性能和最小的通信需求。这些策略适合,适用于所提出的多终端MVDC分配网络的稳定和安全运行。该研究建议使用多终端VSC-MVDC分布网络动态模型进行下垂的控制策略的关键DC电压协调控制特征对未来研究的比较研究。

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