Enhanced Frequency Support of MMC-MTDC Systems with Offshore Wind Plants Integration

Enhanced Frequency Support of MMC-MTDC Systems with Offshore Wind Plants Integration
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초록

With the increasing penetration of renewable energy generation in the power grid, there have been several actual cases of high-voltage direct-current (HVDC) systems replacing conventional high-voltage AC power transmission systems for long-distance power transmission. The widely used full-scale converter (FSC) wind turbines (type 4), unlike the traditional synchronous generators, cannot provide inertial constant support for system frequency stability owing to their special structural problem. Therefore, a control strategy that provides virtual inertia for a system using an HVDC inverter is proposed. Currently, this method is mostly used in a single HVDC transmission line. This study investigates the frequency stability of a modular multilevel converter-based multi-terminal HVDC combined with offshore wind power plants. An enhanced virtual inertia compensation strategy is proposed to improve the frequency stability of onshore AC systems. This study uses the multi-terminal HVDC network of the CIGRE benchmark to build a power grid model and simulate AC systems with different levels of robustness. The simulation results prove the effectiveness of the reinforcement method.

키워드

Modular multilevel-converter high-voltage direct-current (MMC-HVDC) transmission system; Multi-terminal HVDC (MMC-MTDC); Offshore wind power plants; Virtual inertia; Frequency stability; CIGRE benchmark; CONTROL STRATEGY; DROOP CONTROL; INERTIA EMULATION; HVDC; CONVERTER; STABILITY; GRIDS
제목
Enhanced Frequency Support of MMC-MTDC Systems with Offshore Wind Plants Integration
제목 (타언어)
Enhanced Frequency Support of MMC-MTDC Systems with Offshore Wind Plants Integration
저자
Zhang, Zicong; Jang, Gilsoo
DOI
10.1007/s42835-022-01345-3
발행일
2023-03-01
유형
Article
저널명
Journal of Electrical Engineering & Technology
권
18
호
2
페이지
705 ~ 717