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Coordinated Control Strategies for Offshore Wind Farm Integration via VSC-HVDC for System Frequency Support

机译:通过VsC-HVDC进行系统频率支持的海上风电场集成协调控制策略

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摘要

Coordinated control strategies to provide system inertia support for main grid from offshore wind farm that is integrated through HVdc transmission is the subject matter of this paper. The strategy that seeks to provide inertia support to the main grid through simultaneous utilization of HVdc capacitors energy, and wind turbines (WTs) inertia without installing the remote communication of two HVdc terminals is introduced in details. Consequently, a novel strategy is proposed to improve system inertia through sequentially exerting dc capacitors energy and then WTs inertia via a cascading control scheme. Both strategies can effectively provide inertia support while the second one minimizes the control impacts on harvesting wind energy with the aid of communication between onshore and offshore ac grids. Case studies of a wind farm connecting with a HVdc system considering sudden load variations have been successfully conducted to compare and demonstrate the effectiveness of the control strategies in DIgSILENT/PowerFactory.
机译:本文的主题是通过高压直流输电将海上风电场的主电网提供惯性支持的协调控制策略。详细介绍了旨在通过同时利用HVdc电容器能量为主电网提供惯性支持的策略,以及不安装两个HVdc终端的远程通信的风力涡轮机(WTs)惯性的策略。因此,提出了一种新颖的策略,可以通过依次施加直流电容器能量,然后通过级联控制方案施加WTs惯性来改善系统惯性。两种策略都可以有效地提供惯性支持,而第二种策略则借助陆上和海上交流电网之间的通信,将对风能收集的控制影响降至最低。已成功进行了考虑了突然负载变化的,连接有HVdc系统的风电场的案例研究,以比较和证明DIgSILENT / PowerFactory中控制策略的有效性。

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