Title :
Dynamic multi-resolution modeling of power super capacitor
Author :
Wu, Haigang ; Dougal, Roger
Author_Institution :
Dept. of Electr. Eng., South Carolina Univ., Columbia, SC, USA
Abstract :
This paper presents an approach of implementing the dynamic multi-resolution power super capacitor model in the virtual test bed (VTB), a platform for complex system simulation and prototyping. The new model is an extension of the multi-order RLC circuit models and has the ability of switching between different orders dynamically during simulation. The higher-order model has better fidelity, however, its complicated representation and convergence-required smaller time step plague the speed. Unlike some traditional methods, neither the system state space equations nor the local integration error is required to determine the simulation order; instead, the model output derivative is employed here to trigger the switch. Energy conservation law is applied to guarantee the consistency of the switch. The model is validated by its application in the simulation of an electric vehicle system; the results show that the total simulation execution time can be reduced by sixty percent, with less than one percent accuracy loss.
Keywords :
RLC circuits; capacitor switching; supercapacitors; dynamic multiresolution modeling; electric vehicle system; energy conservation law; local integration error; multiorder RLC circuit models; power super capacitor; state space equations; virtual test bed; Circuit simulation; Circuit testing; Power capacitors; Power system modeling; RLC circuits; Switches; Switching circuits; System testing; Vehicle dynamics; Virtual prototyping;
Conference_Titel :
Power Symposium, 2005. Proceedings of the 37th Annual North American
Print_ISBN :
0-7803-9255-8
DOI :
10.1109/NAPS.2005.1560532