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An online structurally constrained LQR design for damping oscillations in power system networks

机译:用于抑制电力系统网络振荡的在线结构约束LQR设计

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This paper presents an online distributed control design for suppressing inter-area oscillations in large power systems under structural constraints posed on the underlying communication network. The presence of multiple clusters of generators in a power system results in several inter-area oscillation modes. By modal analysis, we first show that the contribution of each inter-area mode on the electromechanical state response of the generators is heavily dependent on the perturbed initial state of the system. We then take advantage of this observation to design structural constraints on the communication graph. A parallelized constrained linear quadratic regulator (LQR) design is then proposed to balance the tradeoff between performance and the level of sparsity induced in the network. Algorithms for practical implementation of the design are provided. Results are compared with the full order LQR, and illustrated on the New England 39-bus power system model.
机译:本文提出了一种在线分布式控制设计,用于抑制大型电力系统在底层通信网络上受到结构约束的情况下的区域间振荡。电力系统中发电机的多个群集的存在导致几种区域间振荡模式。通过模态分析,我们首先表明,每个区域间模式对发电机的机电状态响应的贡献在很大程度上取决于系统的扰动初始状态。然后,我们利用这一观察结果来设计通信图上的结构约束。然后提出了并行约束线性二次调节器(LQR)设计,以平衡性能和网络中引起的稀疏度之间的权衡。提供了用于设计的实际实现的算法。将结果与完整订单LQR进行比较,并在新英格兰39总线电源系统模型上进行说明。

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