Title :
An object oriented approach to load flow in distribution systems
Author :
Losi, A. ; Russo, M.
Author_Institution :
Dipt. di Ingegneria Ind., Cassino Univ., Italy
Abstract :
The peculiar characteristics of distribution systems require the development of specific load flow models and solving techniques. The aim of the studies presented in literature is usually to enhance computational efficiency and convergence characteristics of the algorithms. Yet, thanks to the increase of the capacity of modern computing environments, new approaches can be adopted that give preference to flexibility, extensibility and maintainability of the software rather than to computational efficiency. In the paper, the object-oriented paradigm is applied to distribution load flow. The electrical system modeling is structured in a hierarchy of classes; for each class, data and methods are defined to implement local processing of a Newton-Raphson distribution load flow algorithm decomposed into modules; information hiding guarantees modularity and flexibility. The features of a software tool implemented in an open software CAD environment are presented. Numerical applications to a test system evidence the convergence characteristics of the algorithm
Keywords :
Newton-Raphson method; distribution networks; load flow; object-oriented methods; object-oriented programming; power system analysis computing; Newton-Raphson distribution load flow algorithm; convergence characteristics; distribution systems; electrical system modeling; information hiding; load flow; load flow models; object oriented approach; object oriented methods; object oriented programming; open software CAD environment; software tool; Application software; Computational efficiency; Convergence; Load flow; Load modeling; Object oriented modeling; Object oriented programming; Software maintenance; Software tools; System testing;
Conference_Titel :
Power Engineering Society Summer Meeting, 2000. IEEE
Conference_Location :
Seattle, WA
Print_ISBN :
0-7803-6420-1
DOI :
10.1109/PESS.2000.867355