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Analysis on subsynchronous oscillation stability for large scale offshore wind integration

机译:大规模海上风集成对跨越振动稳定性的分析

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As the offshore wind installations are moving further from shore, the transmission distance also increases. Synthesize the cost of construction and maintenance, as well as the technical maturity, grid-connection via AC network will still be a preferred power delivery method for offshore wind power projects in the near future. However, according to the “8?9” blackout in the UK, there is sub-synchronous oscillation (SSO) risk in the AC network connected offshore wind projects, which was attributed to the mismatch between the power electronic source and the power grid. In this article, both eigenvalue analysis and time-domain simulation method are used to evaluate the operating SSO stability of grid integration of large scale offshore wind power. It suggests that transmission system via long distance cables naturally forms a weak AC network, and the SSO characteristics of AC grid connected offshore wind farm is closely related to the wind turbine parameters, offshore distance and the active power output level. At last, the principle of parameter configuration in offshore wind turbines is proposed based on different offshore distances.
机译:随着海上风装置进一步从岸上移动,传输距离也增加。综合建筑和维护成本,以及技术成熟,通过AC网络网格连接仍将是在不久的将来的海上风电项目的首选电力传递方法。然而,根据英国的“8?9”停电,AC网络连接的海同步振荡(SSO)风险,其归因于电力电子源和电网之间的不匹配。在本文中,特征值分析和时域仿真方法均用于评估大规模海上风电网集成的操作SSO稳定性。它表明,通过长距离电缆的传输系统自然地形成弱交流网络,交流电网连接的海上风电场的SSO特性与风力涡轮机参数,海上距离和有源电力输出电平密切相关。最后,基于不同的海上距离提出了海上风力涡轮机参数配置的原理。

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