Title :
Performance analysis for two-level parallel transient stability constrained optimal power flow
Author :
Guangchao Geng ; Quanyuan Jiang ; Ajjarapu, Venkataramana
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ. Hangzhou, Hangzhou, China
Abstract :
Transient stability constrained optimal power flow (TSCOPF) is one the most computational-intensive applications in power systems. Research efforts were made to utilize high performance computing (HPC) technology to parallelize and accelerate TSCOPF solving process, but challenges still exist in performance analysis to identify bottlenecks and improve efficiency on practical HPC platforms such as Beowulf clusters. Based on first two authors´ previous work [8, 12] - two-level parallel TSCOPF with reduced-space interior point method (RIPM), a systematic performance analysis approach is demonstrated in this paper. Comprehensive performance analysis procedures - wall time analysis, MPI/OpenMP profiling and tracing - is employed in order to discover performance bottlenecks. State-of-the-art performance analysis software are employed to generate and visualize performance data, providing guidelines for parallel performance enhancement. Numerical results on a 2746-bus system show effectiveness of the proposed approach and relative low overhead in solving large-scale multi-contingency TSCOPF on a Beowulf cluster.
Keywords :
application program interfaces; data visualisation; load flow; message passing; parallel processing; power engineering computing; power system transient stability; shared memory systems; Beowulf cluster; HPC technology; MPI; OpenMP; RIPM; TSCOPF; high performance computing technology; parallel performance enhancement; performance analysis software; performance bottlenecks; performance data generation; performance data visualization; reduced-space interior point method; two-level parallel transient stability constrained optimal power flow; wall time analysis; Acceleration; Algorithm design and analysis; Generators; Parallel processing; Performance analysis; Power system stability; Sparse matrices;
Conference_Titel :
North American Power Symposium (NAPS), 2013
Conference_Location :
Manhattan, KS
DOI :
10.1109/NAPS.2013.6666908