论文标题
用于主动电力控制的分布式模型预测风电场控制器
A Distributed Model Predictive Wind Farm Controller for Active Power Control
论文作者
论文摘要
由于风的波动性质以及风能的增加使用,风能将对电网的稳定性产生越来越多的负面影响。在本文中,引入了模型预测控制策略,该策略不仅稳定了风电场产生的功率,而且还可以通过风电场进行电力参考跟踪。通过电源参考跟踪,电网操作员有可能使电源生产适应电源需求的变化并抵消其他发电机引入的波动。这样,当必要时,风电场实际上可以促进电网的稳定,而不是对其产生负面影响。在开发的分布式模型预测控制器中开发并使用了低保真性控制的风电场模型。在此控制模型中,考虑到尾流动力学,因此,模型的顺序相对较大。从计算的角度来看,这使它对集中式模型预测控制挑战,以便为大型风电场提供实时控制。因此,本文提出的控制器是分布式模型预测控制。在这里,中央控制问题分为较小的本地控制问题,这些问题在本地控制器上并行解决,这大大降低了计算复杂性,并使模型预测控制在风电场中的应用更接近实际实现。在10和64涡轮风电场的模拟中测试了所提出的控制溶液。
Due to the fluctuating nature of the wind and the increasing use of wind energy as a power source, wind power will have an increasing negative influence on the stability of the power grid. In this paper, a model predictive control strategy is introduced that not only stabilizes the power produced by wind farms, but also creates the possibility to perform power reference tracking with wind farms. With power reference tracking, it is possible for grid operators to adapt the power production to a change in the power demand and to counteract fluctuations that are introduced by other power generators. In this way, wind farms can actually contribute to the stabilization of the power grid when this is necessary instead of negatively influencing it. A low-fidelity control-oriented wind farm model is developed and employed in the developed distributed model predictive controller. In this control model, the wake dynamics are taken into account and consequently, the model's order is relatively large. This makes it, from a computational point of view, challenging for a centralized model predictive control to provide real-time control for large wind farms. Therefore, the controller proposed in this paper is a distributed model predictive control. Here, the central control problem is divided into smaller local control problems that are solved in parallel on local controllers, which significantly reduces the computational complexity and brings the application of model predictive control in a wind farm a step closer to practical implementation. The proposed control solution is tested in simulations on a 10 and 64 turbine wind farm.