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Decision Tree-based Real-time Emergency Control Strategy for Power System

机译:基于决策树的电力系统实时应急控制策略

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In order to realize the online evaluation and control of transient stability after power system fault, a decision tree method and emergency control scheme based on Fisher linear discriminant were proposed. This method firstly processed the offline simulation data based on Fisher liner discrimination (FLD), reduced the data dimension and obtained the distance from the data point to the classification hyperplane, and obtained a more adaptive classification decision tree by training the distance data. Fit the distance to obtain a stability index that can guide emergency control. On this basis, the optimal load shedding and generation shedding scheme were calculated according to the 0-1 linear programming, and the loss was reduced to the minimum under the premise of ensuring the stability of the power system. Finally, the simulation analysis was carried out in the WECC system and New England system. The results showed that the decision tree based on FLD is classified accurately and interpretatively. The online emergency control strategy based on stability margin can effectively deal with the transient instability after fault, and restore the system to stable operation.
机译:为了实现电力系统故障后瞬态稳定性的在线评估和控制,提出了一种基于Fisher线性判别的决策树方法和紧急控制方案。该方法首先基于Fisher衬里辨别(FLD)的离线仿真数据,减少了数据维度并获得了从数据点到分类超平面的距离,并通过训练距离数据来获得更自适应的分类决策树。拟合距离以获得可以引导紧急控制的稳定性指标。在此基础上,根据0-1线​​性规划计算最佳载荷脱落和产生脱落方案,并且在确保电力系统稳定的前提下,损耗将损耗降至最低。最后,在WECC系统和新英格兰系统中进行了仿真分析。结果表明,基于FLD的决策树准确和诠释归类。基于稳定边缘的在线紧急控制策略可以有效地处理故障后的瞬态不稳定,并将系统恢复为稳定运行。

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