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Multilevel Power-Imbalance Allocation Control for Secondary Frequency Control of Power Systems

机译:电力系统二次频率控制的多电平功率不平衡分配控制

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摘要

A consensus-control-based multilevel control law named Multilevel Power-Imbalance Allocation Control (MLPIAC) is presented for a large-scale power system partitioned into two or more groups. Centralized control is implemented in each group while distributed control is implemented at the coordination level of the groups. Besides restoring nominal frequency with a minimal control cost, MLPIAC can improve the transient performance of the system through an accelerated convergence of the control inputs without oscillations. At the coordination level of the control groups, because the number of the groups is smaller than that of nodes, MLPIAC is more effective to obtain the minimized control cost than the purely distributed control law. At the level of the control in each group, because the number of nodes is much smaller than the total number of nodes in the whole network, the overheads in the communications and the computations are reduced compared to the pure centralized control. The asymptotic stability of MLPIAC is proven using the Lyapunov method and the performance is evaluated through simulations.
机译:基于共识控制的多级控制法命名为多级电源 - 不平衡分配控制(MLPIAAC),用于分为两个或多个组的大型电力系统。在每个组中实现集中控制,而分布式控制在组的协调级别实现。除了用最小控制成本恢复名义频率之外,MLPIA离可以通过无振荡的无控制输入的加速收敛来改善系统的瞬态性能。在对照组的协调水平下,因为组的数量小于节点的数量,MLPIac更有效地获得比纯分布的控制法最小化的控制成本。在每个组中的控制级别,因为节点的数量远小于整个网络中的节点的总数,而与纯集中控制相比,通信和计算的开销减少。使用Lyapunov方法证明MLPIAC的渐近稳定性,通过模拟评估性能。

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