Welcome
Our lab seeks to apply a system dynamics and control perspective to problems involving the control and transduction of energy. This scope includes multi-physics modeling, control methodologies formulation, and model-based or model-guided design. The space of applications where this framework has been applied includes nonlinear controllers and nonlinear observers for pneumatically actuated systems, a combined thermodynamic / system dynamics approach to the design of free piston internal combustion and external heat source engines, modeling and model-based design and control of monopropellant systems, hydraulic energy storage, small-scale boundary layer turbines, and energy-based approaches for single and multiple vehicle control and guidance.
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Projects
1. Free-Piston Engine Compressor
2. Control-Based Design of Free-Piston Stirling Engines
3. Advanced Strain Energy Accumulator
4. Modeling and Control of Pneumatic Actuation
5. Single and Multiple Vehicle Control
6. Tesla Turbine for Small-Scale Electrical Power
7. Monopropellant Powered Systems
8. Other
