A symbolic-component architecture for power system steady-state analysis and optimization (CROSBI ID 492915)
Prilog sa skupa u zborniku | stručni rad | domaća recenzija
Podaci o odgovornosti
Džafić, Izudin ; Alvarado, Fernando ; Glavić, Mevludin ; Tešnjak, Sejid
engleski
A symbolic-component architecture for power system steady-state analysis and optimization
This paper addresses issues of reusability of component models. Once a component model is designed, implemented and tested, it should be possible to use it as many times as necessary for a variety of purposes. The main idea of this paper is to introduce a new way for building flexible power system applications. In order to obtain code reusability a "general" non-linear equation handler and solver is implemented. The general-purpose solver does not need to know in advance what kind of problem is going to be solved. Instead, the solver is based on symbolic model handling and evaluation. In order to use the model, each specific applica-tion of interest has a converter that transforms input data to the realm of the general purpose solver. Both the application-specific converter and the general purpose equation handler and solver are designed as components. Thus, there is no need to change, or to recode the solver each time when new specific problem of interest arises. It is only necessary to create a new "converter." The result is that the complete development process is less error prone. In addition to de-scribing code reusability, this paper also presents a unique way of collecting input data and model descriptions that make it possible to reuse symbolic models in an effective manner. Keywords: Software Design and Development, Object-orientation, Code Reusability, COM, Symbolic Computation
Design and Development; Object-orientation; Code Reusability; COM; Symbolic Computation
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Podaci o prilogu
2003.
objavljeno
Podaci o matičnoj publikaciji
Podaci o skupu
VI Savjetovanje BH K CIGRE
predavanje
28.09.2003-02.10.2003
Neum, Bosna i Hercegovina