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Coordinated Voltage Control in Offshore HVDC Connected Cluster of Wind Power Plants

机译:海上风电场高压直流互联集群中的协调电压控制

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This paper presents a coordinated voltage control scheme (CVCS) for a cluster of offshore wind power plants connected to a voltage-source converter-based high-voltage direct current system. The primary control point of the proposed voltage control scheme is the introduced Pilot bus, which is having the highest short-circuit capacity in the offshore AC grid. The developed CVCS comprehends an optimization algorithm, aiming for minimum active power losses in the offshore grid, to generate voltage reference to the Pilot bus. During the steady-state operation, the Pilot bus voltage is controlled by dispatching reactive power references to each wind turbine (WT) in the wind power plant cluster based on their available reactive power margin and network sensitivity-based participation factors, which are derived from the dV/dQ sensitivity of a WT bus w.r.t. the Pilot bus. This method leads to the minimization of the risk of undesired effects, particularly overvoltage at the terminals of the WT located far away from the AC collector substation, by dispatching lower reactive power references compared with the ones nearer to the substation. In addition, this paper proposes a control strategy for improved voltage ride through capability of WTs for faults in the offshore grid, thus leading to improved dynamic voltage profile in the offshore AC grid.
机译:本文为连接到基于电压源变流器的高压直流系统的一组海上风力发电厂提出了一种协调电压控制方案(CVCS)。拟议的电压控制方案的主要控制点是引入的引航母线,该母线在海上交流电网中具有最高的短路容量。所开发的CVCS包含一种优化算法,旨在使海上电网中的有功功率损耗最小,以生成对引航母线的电压参考。在稳态操作期间,通过基于无功功率可用值和基于网络灵敏度的参与因子,将无功功率参考分配给风力发电厂集群中的每个风力涡轮机(WT),来控制先导母线电压WT总线的dV / dQ灵敏度飞行员巴士。通过分派比离变电站更近的无功功率参考值,该方法可最大程度地降低不良影响的风险,特别是在远离AC集热器变电站的WT端子处出现过电压的风险。此外,本文提出了一种控制策略,以提高WT对海上电网故障的穿越能力,从而改善海上AC电网的动态电压分布。

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