Adaptive droop based power sharing control algorithm for offshore multi-terminal VSC-HVDC transmission

Mohamed A. Abdelwahed, E. Elsaadany
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引用次数: 1

Abstract

Power sharing control and voltage regulation are considered as significant challenges in the development of large MT VSC-HVDC transmission grids, besides fault ride through and automatic restoration aspects. The main contribution of the work presented in this research is the proposal of a generic power sharing control algorithm. This algorithm is based on sharing the imported active power to the MT HVDC network among different AC grids based on desired sharing ratios, to fulfil active power requirements of the connected grids in order to achieve their own objectives, such as supporting the energy adequacy, increasing wind energy penetration and loss minimization. This algorithm is used as a supervisory control algorithm to integrate a number of offshore wind farms into various onshore AC grids.
基于自适应下垂的海上多终端VSC-HVDC电力共享控制算法
除故障穿越和自动恢复外,电力共享控制和电压调节是大型MT - csc - hvdc输电网发展面临的重大挑战。本研究的主要贡献是提出了一种通用的功率共享控制算法。该算法基于将输入的有功功率按期望的共享比例在不同的交流电网之间共享到MT HVDC网络,以满足并网电网的有功功率需求,从而实现各自的目标,如支持能量充分性、提高风能渗透率和最小化损耗。将该算法作为一种监督控制算法,用于将多个海上风电场集成到各种陆上交流电网中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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