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Topology-based injection shift factors for reactive power flow subject to load surges

机译:基于拓扑的注入无功潮流的负载转移因子

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摘要

This paper develops an injection shift factors for reactive power (QISF) which is dependent on network topology only to achieve a fast linear power flow estimation after multiple loads surges including unexpected large machines inrush and peak hours surges. The proposed approach can estimate power flow subject to surges at an extreme fast speed with acceptable loss of accuracy, which can help system operators modify generator outputs and protect transmission lines from overload. Unlike traditional Newton-Raphson (NR) power flow algorithm and other estimation methods using distribution factors including Jacobian-based distribution factors (JBDFs), the proposed approach is achieved without measurements of system nodal voltages. The proposed approach was tested on IEEE 14 and 30 bus test systems and compared with conventional NR algorithm. The numerical results indicate that with acceptable accuracies, the proposed approach can obtain power flow solutions in significantly short time.
机译:本文开发了一种无功功率注入漂移因子(QISF),它依赖于网络拓扑,仅在多个负载浪涌(包括意料之外的大型机器涌入和高峰时段浪涌)之后实现快速线性潮流估计。所提出的方法可以以极快的速度估算承受电涌的潮流,并且可以接受可接受的精度损失,这可以帮助系统操作员修改发电机输出并保护传输线免受过载。与传统的牛顿-拉夫森(NR)潮流算法和其他使用包括基于雅可比分布因子(JBDF)在内的分布因子的估计方法不同,该方法无需测量系统节点电压即可实现。该方法在IEEE 14和30总线测试系统上进行了测试,并与常规NR算法进行了比较。数值结果表明,在具有可接受的精度的情况下,所提出的方法可以在相当短的时间内获得潮流解决方案。

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