DocumentCode
3458205
Title
Fast power system computation using multiprocessor
Author
Hassan, Ismail ; Ahmed, Muse Mohamud ; Mohd, Safuan Munir
Author_Institution
Fac. of Electr. Eng., Kolej Univ. Teknikal Kebangsaan Malaysia, Malaysia
fYear
2003
fDate
25-26 Aug. 2003
Firstpage
262
Lastpage
266
Abstract
The system being developed is a power system module that will calculate load flow processes and outputting results for better understanding of the grid being analyzed. A dedicated multiprocessors system is developed to suit the purpose. The multiprocessors will utilize low-cost and readily available processors. At the moment, there are only three (3), computers will be connected as a multiprocessors system. Beowulf Linux clustering is implemented to create a \´supercomputer\´ like environment of the multiprocessor system. Through Linux stable operating system environment, the program would simulate the network using Newton-Raphson iterations to produce results. Fast solutions are enabled using parallel programming and load balancing technique among the multiprocessors system. User-friendly interface is created for easy access and easy interaction with the program and data input. Any trained personnel can monitor the system using the wide 21" screen that will also display the status of other processors currently working.
Keywords
Linux; Newton-Raphson method; load flow; microcomputer applications; multiprocessing systems; parallel programming; power system analysis computing; user interfaces; Beowulf Linux clustering; Linux stable operating system; Newton-Raphson iterations; load balancing technique; multiprocessor system; parallel programming; power system computation; supercomputer; user-friendly interface; Computational modeling; Linux; Load flow; Load flow analysis; Multiprocessing systems; Operating systems; Parallel programming; Power system analysis computing; Power systems; Supercomputers;
fLanguage
English
Publisher
ieee
Conference_Titel
Research and Development, 2003. SCORED 2003. Proceedings. Student Conference on
Print_ISBN
0-7803-8173-4
Type
conf
DOI
10.1109/SCORED.2003.1459703
Filename
1459703
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