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A Hierarchical Design for Damping Control of Wind-Integrated Power Systems Considering Heterogeneous Wind Farm Dynamics

机译:考虑异构风电场动态的风集电力系统阻尼控制的层次设计

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The majority of control designs for wind power systems rest upon the simplifying assumption that every wind turbine and generator (WTG) inside a wind farm has identical dynamics, and, hence, can be aggregated into a single WTG admitting a single controller. In reality, however, this assumption does not hold because of wake effect due to which the small-signal models of turbines in a given row may be similar, but those between different rows can be significantly dissimilar. In this paper we propose a hierarchical control design to address these types of heterogeneous models of WTGs in a wind farm. Our approach is to group all turbines in a row as a cluster, design a cluster-level aggregate controller by averaging of states, make these aggregate controllers exchange average state information through a local communication network, and thereafter project the aggregate controller back to the original WTGs for implementation. Simulations validating the effectiveness of this hierarchical controller are shown for the IEEE 68-bus benchmark power system with one wind farm.
机译:风电系统的大多数控制设计依赖于简化假设,即风电场内的每个风力涡轮机和发电机(WTG)具有相同的动力学,并且因此,可以聚合到允许单个控制器的单个WTG中。然而,实际上,由于哪个给定行中的涡轮机的小信号模型可能类似的唤醒效果,这种假设可能是相似的,但不同行之间的那些可能是显着的。在本文中,我们提出了一种分层控制设计,以解决风电场中的这些类型的WTGS异构模型。我们的方法是将所有涡轮机连续分组为群集,通过对状态进行平均来设计群集级聚合控制器,使这些聚合控制器通过本地通信网络交换平均状态信息,此后将聚合控制器投影回原始WTGS实施。仿真验证该等级控制器的有效性,显示了一个有一个风电场的IEEE 68总线基准电力系统。

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