Optimal size selection of step-up transformers in PV plants

Author(s):  
A. Testa ◽  
S. De Caro ◽  
R. La Torre ◽  
T. Scimone
PLoS ONE ◽  
2018 ◽  
Vol 13 (7) ◽  
pp. e0200464 ◽  
Author(s):  
Juan Santos ◽  
Bent Herrmann ◽  
Daniel Stepputtis ◽  
Claudia Günther ◽  
Bente Limmer ◽  
...  

Author(s):  
Bong Seong Jung ◽  
Bryan W. Karney

Genetic algorithms have been used to solve many water distribution system optimization problems, but have generally been limited to steady state or quasi-steady state optimization. However, transient events within pipe system are inevitable and the effect of water hammer should not be overlooked. The purpose of this paper is to optimize the selection, sizing and placement of hydraulic devices in a pipeline system considering its transient response. A global optimal solution using genetic algorithm suggests optimal size, location and number of hydraulic devices to cope with water hammer. This study shows that the integration of a genetic algorithm code with a transient simulator can improve both the design and the response of a pipe network. This study also shows that the selection of optimum protection strategy is an integrated problem, involving consideration of loading condition, device and system characteristics, and protection strategy. Simpler transient control systems are often found to outperform more complex ones.


Estuaries ◽  
1994 ◽  
Vol 17 (3) ◽  
pp. 668 ◽  
Author(s):  
Elizabeth L. Ebersole ◽  
Victor S. Kennedy

Author(s):  
Nicole A. Datson ◽  
Geoffrey M. Duyk ◽  
Lau A. J. Blonden ◽  
Gert-Jan B. Van Ommen ◽  
Johan T. Den Dunnen

Author(s):  
V. V. Arykantsev ◽  
V. V. Chernyshev ◽  
N. G. Sharonov

The paper describes the principle of choosing the optimal size and shape of the supporting element of a walking machine, provided that the maximum possible contact area with the supporting surface is provided for moving on snow or soils with a low bearing capacity. The study was carried out for an orthogonal walking propulsion device, but it can also be used for walking mechanisms of other types.


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