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A new method to assess the contribution of VSC-HVDC connected wind farms to the primary frequency control of power networks

机译:一种评估VSC-HVDC相连风电场对电网主频控制的贡献的新方法

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This paper introduces a new method to assess the contribution of VSC-HVDC connected wind farms to the primary frequency control (PFC) of power networks. This is a formulation that enables the estimation of the post-disturbance conditions of the power system, including its electrical frequency, after the incidence of power imbalances, where various VSC-HVDC connected wind farms may be simultaneously simulated. As opposed to a full dynamic simulation, which may be time-consuming, the developed method resorts to modelling all power system components for the PFC time frame by using enhanced steady-state power flow models which are solved for a power system operating point that agrees well with the operating conditions of the network after the action of the PFC. Therefore, models of DFIG and PMSG are first derived by following a proposed procedure for the determination of the frequency regulation of the wind turbines, often called statism, whose value varies with the wind speed, as opposed to that of conventional power plants which is constant. Because the power reserve of the wind generators is used to counteract the frequency deviations in the AC power network, a VSC-HVDC link model is also developed which enables a free power transfer to conform to the output power of the wind farm. The proposed method is validated using a 9-bus power system comprising a 120-MW VSC-HVDC connected wind farm and whose results are compared against those computed by a full time-domain dynamic simulation, obtaining a very good agreement between the two quite distinct approaches where, for instance, the post-disturbance system frequency computed by the proposed method only differs by 0.092% with respect to that obtained by the full dynamic simulation. The IEEE 57-bus test system, slightly modified to incorporate two VSC-HVDC connected wind farms, is also simulated to show that the impact of the frequency regulation of the wind farms on the PFC may be assessed in a very quick, effective manner. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文介绍了一种评估VSC-HVDC相连风电场对电网主频控制(PFC)的贡献的新方法。这是一个公式,可以在发生电力不平衡之后估算电力系统的扰动后状况,包括其电频率,在该情况下可以同时模拟各种VSC-HVDC连接的风电场。与可能耗时的全动态仿真相反,开发的方法诉诸于通过使用增强型稳态潮流模型对PFC时间范围内的所有电力系统组件进行建模,对于满足要求的电力系统工作点进行求解在PFC动作后,网络的运行状况良好。因此,首先通过遵循建议的确定风力涡轮机频率调节的程序(通常称为统计量)来推导DFIG和PMSG的模型,其值随风速而变化,这与常规发电厂的常数不同。由于风力发电机的功率储备用于抵消交流电网中的频率偏差,因此还开发了VSC-HVDC链路模型,该模型使自由功率传输能够符合风电场的输出功率。所提出的方法已使用9总线电力系统进行了验证,该系统包括一个120 MW VSC-HVDC相连的风电场,并将其结果与通过全时域动态仿真计算的结果进行了比较,从而在两个截然不同的模型之间获得了很好的一致性例如,通过提议的方法计算出的扰动后系统频率与完全动态仿真所获得的相差仅0.092%。还对IEEE 57总线测试系统进行了稍微修改,使其包含两个VSC-HVDC连接的风电场,并且对它进行了仿真,以显示可以非常快速,有效的方式评估风电场的频率调节对PFC的影响。 (C)2017 Elsevier B.V.保留所有权利。

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