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A Method for Dynamic Security Assessment of Power Systems with Simultaneous Consideration of Hopf and Saddle-Node Bifurcations

机译:具有同时考虑Hopf和鞍节点分岔的动力系统动态安全评估方法

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This paper presents a methodology to identify the stability margin in the safety region due to Hopf (HB) and Saddle-Node (SNB) Bifurcations. The safety region due to the HB corresponds to the limit of damping of 5% for all eigenvalues of the linear model of the power system, and the safety margin due to the SNB corresponds to 96% of the load of the SNB point. The proposed methodology is based on linear models. In order to improve the convergence of the algorithm, parallel computation, pre-conditioning of the initial conditions of the variables and a method to handle the sparsity of the linear model was used. The proposed methodology was applied in the IEEE 39 bus benchmark power system considering the load base case and the N-1 contingency criterion of transmission line disconnection.
机译:本文提出了一种方法,以识别由于HOPF(HB)和鞍座节点(SNB)分叉的安全区域中的稳定性裕度。由于HB引起的安全区域对应于电力系统的线性模型的所有特征值的5%的限制,并且由于SNB引起的安全裕度对应于SNB点的负载的96%。所提出的方法基于线性模型。为了改善算法的收敛,并行计算,使用的并行计算,变量的初始条件的预处理以及处理线性模型的稀疏性的方法。考虑负载基础壳体和传输线断开的N-1应急标准,应用了所提出的方法在IEEE 39总线基准电力系统中应用。

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