Title :
Multivariable submarine control system analysis and design using an interactive visualization tool
Author :
Kwak, Sung-Sik ; Lim, Chen-I ; Metzger, Richard P., Jr. ; Rodriguez, Armando A.
Author_Institution :
Dept. of Electr. Eng., Arizona State Univ., Tempe, AZ, USA
Abstract :
This paper describes an Interactive Modeling, Simulation, Animation, and Real-Time Control (MoSART) Environment which may be used for analyzing, designing, visualizing and evaluating the performance of robust multivariable submarine control systems. The described MoSART environment is based on Microsoft Windows NT/95/98, Visual C++, Microsoft Direct-3D, and MATLAB/SIMULINK. The environment consists of several key modules: (i) a program user-interface (PUI) module, (ii) a real-time simulation (RTS) module, (iii) a graphical visualization and animation (GVA) module, and (iv) a help/instruct module. The environment also accommodates data exchange with MATLAB. This is useful for control system analysis and redesign. This makes the developed environment very extensible with respect to mathematical modeling and control. The developed Interactive MoSART Submarine Environment is shown to be a valuable tool for enhancing the analysis and design process. Examples are presented to illustrate its utility
Keywords :
computer animation; control system CAD; control system analysis computing; data visualisation; interactive systems; multivariable control systems; real-time systems; robust control; underwater vehicles; GVA module; Interactive MoSART Submarine Environment; Interactive Modeling, Simulation, Animation, and Real-Time Control Environment; MATLAB; Microsoft Direct-3D; Microsoft Windows; PUI module; RTS module; SIMULINK; Visual C++; control system redesign; data exchange; graphical animation; graphical visualization; help/instruct module; interactive visualization tool; multivariable submarine control system analysis; multivariable submarine control system design; program user-interface (PUI) module; real-time simulation module; robust multivariable submarine control systems; Analytical models; Animation; Control system analysis; MATLAB; Mathematical model; Performance analysis; Real time systems; Robust control; Underwater vehicles; Visualization;
Conference_Titel :
American Control Conference, 1999. Proceedings of the 1999
Conference_Location :
San Diego, CA
Print_ISBN :
0-7803-4990-3
DOI :
10.1109/ACC.1999.782401