scholarly journals Placement optimization of Multi-Type fault current limiters based on genetic algorithm

2021 ◽  
Vol 4 (5) ◽  
pp. 501-512
Author(s):  
Guofeng Jin ◽  
Jie Tan ◽  
Lingling Liu ◽  
Chuan Wang ◽  
Tiejiang Yuan
2017 ◽  
Vol 7 (1) ◽  
pp. 1329-1333 ◽  
Author(s):  
N. Bayati ◽  
S. H. H. Sadeghi ◽  
A. Hosseini

Distributed Generation (DG) connection in a power system tends to increase the short circuit level in the entire system which, in turn, could eliminate the protection coordination between the existing relays. Fault Current Limiters (FCLs) are often used to reduce the short-circuit level of the network to a desirable level, provided that they are dully placed and appropriately sized. In this paper, a method is proposed for optimal placement of FCLs and optimal determination of their impedance values by which the relay operation time, the number and size of the FCL are minimized while maintaining the relay coordination before and after DG connection. The proposed method adopts the removal of low-impact FCLs and uses a hybrid Genetic Algorithm (GA) optimization scheme to determine the optimal placement of FCLs and the values of their impedances. The suitability of the proposed method is demonstrated by examining the results of relay coordination in a typical DG network before and after DG connection.


Author(s):  
Handrea Bernando Tambunan ◽  
Putu Agus Aditya Pramana ◽  
Brian Bramantvo Satriaji D A Harsono ◽  
Aristo Adi Kusuma ◽  
Nur Widi Priambodo ◽  
...  

2020 ◽  
pp. 136943322094719
Author(s):  
Xianrong Qin ◽  
Pengming Zhan ◽  
Chuanqiang Yu ◽  
Qing Zhang ◽  
Yuantao Sun

Optimal sensor placement is an important component of a reliability structural health monitoring system for a large-scale complex structure. However, the current research mainly focuses on optimizing sensor placement problem for structures without any initial sensor layout. In some cases, the experienced engineers will first determine the key position of whole structure must place sensors, that is, initial sensor layout. Moreover, current genetic algorithm or partheno-genetic algorithm will change the position of the initial sensor locations in the iterative process, so it is unadaptable for optimal sensor placement problem based on initial sensor layout. In this article, an optimal sensor placement method based on initial sensor layout using improved partheno-genetic algorithm is proposed. First, some improved genetic operations of partheno-genetic algorithm for sensor placement optimization with initial sensor layout are presented, such as segmented swap, reverse and insert operator to avoid the change of initial sensor locations. Then, the objective function for optimal sensor placement problem is presented based on modal assurance criterion, modal energy criterion, and sensor placement cost. At last, the effectiveness and reliability of the proposed method are validated by a numerical example of a quayside container crane. Furthermore, the sensor placement result with the proposed method is better than that with effective independence method without initial sensor layout and the traditional partheno-genetic algorithm.


2004 ◽  
Vol 14 (2) ◽  
pp. 851-854 ◽  
Author(s):  
T. Janowski ◽  
H.D. Stryczewska ◽  
S. Kozak ◽  
B. Kondratowicz-Kucewicz ◽  
G. Wojtasiewicz ◽  
...  

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