Research on Line Simulation and Flexible Configuration Scheme of Distribution Network Practical-Test-Platform

Author(s):  
Lifang Wu ◽  
Xiaoyong Yu ◽  
Weixiang Huang ◽  
Shaonan Chen ◽  
Liqun Yin
2020 ◽  
Author(s):  
Xiaoyong Yu ◽  
Lifang Wu ◽  
Weixiang Huang ◽  
Shaonan Chen ◽  
Liqun Yin

2016 ◽  
Vol 55 ◽  
pp. 03006
Author(s):  
Kansheng Yu ◽  
Ying Wu ◽  
Ruixiang Fan ◽  
Benren Pan ◽  
Bei Cao
Keyword(s):  

Processes ◽  
2021 ◽  
Vol 9 (12) ◽  
pp. 2112
Author(s):  
Tianen Huang ◽  
Zhenjie Wu ◽  
Yuantao Wang ◽  
Jian Tang ◽  
Xiang Li ◽  
...  

Pre-dispatch is an important way for distribution networks to cope with typhoon weather, enhance resilience and reduce economic losses. In order to accurately describe the faults and consequences of components’ failure in the distribution network, this paper establishes a pre-dispatch model to cope with typhoon weather based on line failures consequence analysis. First, Monte Carlo simulation is used to sample the typical fault scenarios of vulnerable lines. According to the location of switchgear, the distribution network is partitioned and a block breaker correlation matrix is established. Combined with the line fault status, a fault consequence model of distribution lines related to the pre-dispatching strategy is established. Then, the objective function is given to minimize the sum of the cost of the pre-dispatch operation and the power outage, and then establish a pre-dispatch model for the distribution network. In order to reduce the computational complexity, PH (Progressive Hedging) algorithm is used to solve the model. Finally, the IEEE-69 test system is used to analyze the effectiveness of the method. The results show that the proposed dispatching model can effectively avoid potential risks, reduce system economic losses and improve the resilience of power grids.


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