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Development of nonlinear predictor with several lead steps for continuation power flow calculation

机译:具有若干铅阶段的非线性预测因子的开发,用于延续电力流量计算

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This paper proposes a new continuation power flow calculation method in power systems. The continuation power flow calculation focuses on tracing power flow solutions in changing a specified value of the power flow calculation. It plays an important role in power system operation and planning. In particular, it is very useful for understanding load characteristics at each node. From a standpoint of static voltage instability, the results are used for drawing a P-V curve at a node. In practice, the continuation power flow calculation needs both computational efficacy and robustness of the algorithm. The mainstream of continuation power flow calculation is based on the predicted-corrector method. In this paper, a new nonlinear predictor is proposed to speed up computational time of the predictor-corrector method. The proposed method makes use of the solution extrapolation to evaluate a predicted value for several lead steps. The effectiveness of the proposed method is demonstrated in the IEEE 118-node and 300-node systems.
机译:本文提出了一种新型电力系统的延续电力流量计算方法。延续电力流量计算侧重于改变功率流量计算指定值的跟踪电流解决方案。它在电力系统运行和规划中起着重要作用。特别是,在每个节点处了解负载特性非常有用。从静态电压不稳定性的角度来看,结果用于在节点处绘制P-V曲线。在实践中,延续功率流量计算需要计算效果和算法的鲁棒性。延续功率流量计算的主流基于预测校正方法。在本文中,提出了一种新的非线性预测因子来加速预测器校正器方法的计算时间。该方法利用溶液外推,评估几个铅步骤的预测值。所提出的方法的有效性在IEEE 118节点和300节点系统中证明。

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