DocumentCode :
1570688
Title :
Parallel computing environments and methods for power distribution system simulation
Author :
Lu, Ning ; Taylor, Z. Todd ; Chassin, Dave P. ; Guttromson, Ross ; Studham, Scott
Author_Institution :
Pacific Northwest Lab., Richland, WA, USA
fYear :
2005
Firstpage :
215
Abstract :
The development of cost-effective high-performance parallel computing on multi-processor supercomputers makes it attractive to port excessively time consuming simulation software from personal computers (PC) to super computes. The power distribution system simulator (PDSS) takes a bottom-up approach and simulates load at the appliance level, where detailed thermal models for appliances are used. This approach works well for a small power distribution system consisting of a few thousand appliances. When the number of appliances increases, the simulation uses up the PC memory and its runtime increases to a point where the approach is no longer feasible to model a practical large power distribution system. This paper presents an effort made to port a PC-based power distribution system simulator to a 128-processor shared-memory supercomputer. The paper offers an overview of the parallel computing environment and a description of the modification made to the PDSS model. The performance of the PDSS running on a standalone PC and on the supercomputer is compared. Future research direction of utilizing parallel computing in the power distribution system simulation is also addressed.
Keywords :
distribution networks; power system simulation; PC-based power distribution system simulator; multiprocessor supercomputers; parallel computing environments; power distribution system simulation; simulation software; Computational modeling; Computer simulation; Concurrent computing; Home appliances; Microcomputers; Parallel processing; Power distribution; Power system modeling; Supercomputers; Thermal loading;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering Society General Meeting, 2005. IEEE
Print_ISBN :
0-7803-9157-8
Type :
conf
DOI :
10.1109/PES.2005.1489110
Filename :
1489110
Link To Document :
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