An Evaluation Method of Branch Importance in Power System
A power system and importance technology, applied in system integration technology, information technology support system, electrical digital data processing, etc., can solve problems such as large amount of calculation, no consideration of real-time operation mode, gap between real power grid conditions, etc., and achieve simple calculation. Moreover, the calculation is simple and fast, and the effect of the comprehensive perspective is considered.
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Embodiment 1
[0044] In order to further illustrate the branch importance evaluation method provided by the present invention in consideration of the topology and operating state, the IEEE39 node system is used as an example for simulation. The system includes 10 generators, 39 nodes, 12 transformers, 19 load points and 46 branches, its topology is as follows figure 2 As shown, the number represents the serial number of the node, G represents the generator, the arrow represents the load method, and the cross represents the busbar. In this embodiment, the weight coefficient σ=1 of the active power transmission factor, and the weight coefficient μ=0 of the impact index.
Embodiment 2
[0054] Embodiment 1 is repeated with the same steps described above, with the difference that the weight coefficient σ=0 for the active power transmission factor, and the weight coefficient μ=1 for the impact index.
Embodiment 3
[0063] Repeat embodiment 1 with the same steps described above, the difference is that the weight coefficient σ=0.5 of the active power transmission intermediary factor, and the weight coefficient μ=0.5 of the impact index, and the comprehensive importance of each branch is obtained as image 3 shown.
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