近海可再生能源直流微电网稳定性评价

Waqas Hassan, E. Semshikov, M. Negnevitsky, Md. Alamgir Hossain
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摘要

传统的海上微电网,如钻井平台和油气平台,依靠柴油发电机提供电力需求。随着近年来海上风能、太阳能和波浪发电的发展,以及储能技术的成熟,海上微电网正在从柴油发电过渡。当大多数能源和负载是直流电或依赖于转换为直流电时,将网络设置为直流微电网成为一个可行的选择。在海上微电网中采用直流耦合消除了谐波畸变、低惯性和控制过于复杂的问题。然而,随着间歇性发电的高度普及,提供直流微电网的稳定性成为一项具有挑战性的任务。这在实际的直流微电网中尤其严重,因为在这个阶段,没有很多现成的直流组件。本文介绍了为近海直流微电网研究建立的实验实验室设施,并探讨了基于可再生能源的直流微电网的稳定性问题。
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Stability Assessment of Renewable Energy-Based DC Microgrids for Offshore Applications
Traditional offshore microgrids such as drilling rigs and oil and gas platforms rely on diesel generators to provide their electricity needs. With the recent developments in offshore wind, solar and wave generation, and the maturity growth of the energy storage technology, the offshore microgrids are transitioning away from diesel generation. When the majority of the energy sources and loads is DC-native or rely on conversion to DC, setting up the network as a DC microgrid becomes a viable option. Using DC coupling in offshore microgrids eliminates the problems of harmonic distortion, low inertia and overcomplicated control. However, with the high penetration of intermittent generation, the provision of DC microgrid stability becomes a challenging task. This is particularly acute within practical DC microgrids since, at this stage, there are not many off-the-shelf DC components. This paper describes the experimental lab facilities set up for offshore DC microgrid research and investigates the stability issues presented in the renewable energy-based DC microgrid.
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