MATLAB-based fault analysis of Power Systems with Graphical User Interface as an educational tool

Author(s):  
Kenan Hatipoglu ◽  
Arash Jamahbozorg ◽  
Ghadir Radman
2015 ◽  
Vol 1115 ◽  
pp. 578-581
Author(s):  
J.S. Mohamed Ali ◽  
Abeid Abeid Rubeya

LEADME ( Laminate Analysis and Design Made Easy ), an educational software useful for the analysis and design of laminated composite structure has been developed. The software encompasses both the micro and macro mechanics analysis of lamina and laminate. The highlight of this software is that, apart from usual laminate analysis, the software is capable to solve practical laminate applications such as analysis of beams and also a design module is included. The software has been developed using MATLAB-Graphical User Interface (GUI) which makes it very user friendly. The results obtained from this software have been validated. It is expected that this software will serve as an educational tool complementing textbooks for students to gain better understanding of composite structural analysis.


1993 ◽  
Vol 8 (1) ◽  
pp. 97-104 ◽  
Author(s):  
M. Foley ◽  
A. Bose ◽  
W. Mitchell ◽  
A. Faustini

Author(s):  
Aiman Farid Arbaei ◽  
Nor Adni Mat Leh ◽  
Shabinar Abd Hamid ◽  
Zuraida Muhammad ◽  
Dayang Suhaida Awang Damit

2015 ◽  
Vol 15 (3) ◽  
pp. 458
Author(s):  
Ghouraf Djamel Eddine ◽  
Naceri Abdellatif ◽  
Abid Mohamed ◽  
Kabi Wahiba

This paper present the realization and development of a graphical user interface (GUI) to studied the stability and robustness of power systems (analysis and synthesis), using Conventional Power System Stabilizers (CPSS - realized on PID scheme) or advanced controllers (based on adaptive and robust control), and applied on automatic excitation control of powerful synchronous generators, to improve dynamic performances and robustness. The GUI is a useful average to facilitate stability study of power system with the analysis and synthesis of regulators, and resolution of the compromise: results precision / calculation speed. The obtained Simulation results exploiting our developed GUI realized under MATLAB shown considerable improvements in static and dynamic performances, a great stability and enhancing the robustness of power system, with best precision and minimum operating time. This study was performed for different types of powerful synchronous generators.


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