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Cooperative LVRT control for protecting PMSG-based WTGs using battery energy storage system

机译:使用电池储能系统保护基于永磁同步电机的风力发电机的协同LVRT控制

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摘要

Low-voltage ride-through (LVRT) capability is crucial for wind power plants that are grid-connected. A grid code requires wind farms to remain on-grid and inject a specific reactive current when a grid fault occurs. The requirements are satisfied by a cooperative control scheme of a battery energy storage system (BESS) and grid-side converter (GSC) for improving the LVRT capacity of wind turbine generators using permanent magnet synchronous generators. The proposed approach uses the BESS to absorb a power difference that appears in the back-to-back converters during the LVRT operation. Hence, the DC-link voltage is regulated by the BESS. In addition, the GSC control allows reactive current to be injected into the grid according to the grid code requirements. Finally, the wind turbine generators, which use the proposed approach, are built in MATLAB/Simulink. The theoretical analysis of the proposed method is validated by simulation. (c) 2023 The Author(s). Published by Elsevier Ltd. This is an open access article under theCCBYlicense (http://creativecommons.org/licenses/by/4.0/).
机译:低压穿越 (LVRT) 能力对于并网风力发电厂至关重要。电网规范要求风电场保持并网,并在电网故障发生时注入特定的无功电流。电池储能系统(BESS)和电网侧变流器(GSC)的协同控制方案满足了这些要求,以提高使用永磁同步发电机的风力发电机的LVRT容量。所提出的方法使用BESS来吸收LVRT工作期间背靠背转换器中出现的功率差。因此,直流母线电压由BESS调节。此外,GSC控制允许根据电网规范要求将无功电流注入电网。最后,使用所提出的方法的风力涡轮发电机是在MATLAB/Simulink中构建的。仿真验证了所提方法的理论分析。(c) 2023 作者。由以下开发商制作:Elsevier Ltd.这是CCBYlicense(http://creativecommons.org/licenses/by/4.0/)下的开放获取文章。

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