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Connecting wind power plant with weak grid - Challenges and solutions

机译:将风力发电厂与电网薄弱相连接-挑战与解决方案

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The size of individual wind power plant is continuously increasing, while sites with good wind conditions often are located far from electrical loads. This often results in wind power plants connecting to weak transmission grids. The short circuit ratios at the point of common coupling of wind power plant can be lower than 3 in many cases, and even lower than 2 in extreme cases. This paper analyzes the problems of connecting wind power plant with a weak AC system through detailed voltage stability analysis, small signal stability analysis and transient stability analysis, using power flow, frequency domain and time domain simulation methods. Among the technical challenges, the voltage stability is identified as most critical to the stable operation of wind power plant within weak grid. If the wind power plant itself cannot provide sufficiently fast and extensive compensation, the typical solution for the voltage stability problem is to install dynamic reactive power compensation with fast voltage control capability, such as STATCOM or even Synchronous Condenser. Such additions heavily increase investment cost. In this paper, a coordinated control method of wind power plant is proposed, to minimize the size of any additional reactive power compensation, and it is compared to de facto voltage controllers. The new method enables wind power plant to be controlled as an integral generation source to fulfill grid code requirements, configuring individual WTGs to work as stiff voltage sources. However, with the increase of bandwidth of voltage controller and decrease of grid short circuit ratio, the system is susceptible to a shunt resonance between voltage controller and grid impedance, and its influence on the proposed method is discussed.
机译:单个风力发电厂的规模不断增加,而风力条件良好的站点通常位于远离电力负荷的位置。这通常导致风力发电厂连接到薄弱的输电网。在许多情况下,风电厂的公共耦合点处的短路比可以小于3,在极端情况下甚至可以小于2。本文通过潮流,频域和时域仿真方法,通过详细的电压稳定性分析,小信号稳定性分析和暂态稳定性分析,分析了风电场与弱交流系统的连接问题。在技​​术挑战中,电压稳定性被认为是风力发电站在弱电网中稳定运行的最关键因素。如果风力发电厂本身无法提供足够快速和广泛的补偿,则解决电压稳定性问题的典型解决方案是安装具有快速电压控制功能的动态无功补偿,例如STATCOM或什至同步冷凝器。这样的添加大大增加了投资成本。本文提出了一种风电厂的协调控制方法,以最小化任何附加无功补偿的大小,并将其与实际电压控制器进行比较。新方法使风力发电厂可以作为整体发电源进行控制,以满足电网法规要求,将各个WTG配置为刚性电压源。然而,随着电压控制器带宽的增加和电网短路率的降低,系统容易受到电压控制器与电网阻抗之间的并联谐振的影响,并讨论了其对所提出方法的影响。

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