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Controlled Islanding via Weak Submodularity

机译:通过弱潜水线控制岛屿

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Cascading failures typically occur following a large disturbance in power systems, such as tripping of a generating unit or a transmission line. Such failures can propagate and destabilize the entire power system, potentially leading to widespread outages. One approach to mitigate impending cascading failures is through controlled islanding, in which a set of transmission lines is deliberately tripped to partition the unstable system into several disjoint, internally stable islands. Selecting such a set of transmission lines is inherently a combinatorial optimization problem. Current approaches address this problem in two steps: first, classify coherent generators into groups and then separate generator groups into different islands with minimal load-generation imbalance. These methods, however, are based on computationally expensive heuristics that do not provide optimality guarantees. This paper proposes a novel approach to controlled islanding based on weak submodularity. The new formulation jointly captures the minimal generator non-coherency and minimal load-generation imbalance in one objective function. The islanding problem is then relaxed to a formulation with bounded submodularity ratio and a matroid constraint. An approximation algorithm is proposed which achieves a provable optimality bound on non-coherency and load-generation imbalance. The proposed framework is tested on IEEE 39-bus and 118-bus power systems.
机译:级联故障通常在功率系统中的大扰动之后发生,例如发电机单元的跳闸或传输线。这种失败可以传播和稳定整个电力系统,可能导致广泛的中断。减轻即将推断的级联故障的一种方法是通过受控岛地,其中一组传输线被故意绊倒,以将不稳定的系统分配到几个不间断的内部稳定岛中。选择这样的传输线本质上是一个组合优化问题。目前的方法在两个步骤中解决了这个问题:首先,将连贯的生成器分类为组,然后将发电机组分成不同的岛屿,具有最小的负载发生不平衡。然而,这些方法基于计算昂贵的启发式,不提供最佳保证。本文提出了一种基于弱潜水线的控制岛屿的新方法。新配方在一个客观函数中共同捕获最小的发电机不相干性和最小的负载发生不平衡。然后将岛状问题放松到具有有界性亚形分子的配方和Matroid约束。提出了一种近似算法,其在非相干性和负载发生不平衡上实现了一种可提供的最优性。在IEEE 39-BUS和118总线电源系统上测试了所提出的框架。

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