Model-Free Stabilization by Extremum Seeking
Book information
Description
With this brief, the authors present algorithms for model-free stabilization of unstable dynamic systems. An extremum-seeking algorithm assigns the role of a cost function to the dynamic system’s control Lyapunov function (clf) aiming at its minimization. The minimization of the clf drives the clf to zero and achieves asymptotic stabilization. This approach does not rely on, or require knowledge of, the system model. Instead, it employs periodic perturbation signals, along with the clf. The same effect is achieved as by using clf-based feedback laws that profit from modeling knowledge, but in a time-average sense. Rather than use integrals of the systems vector field, we employ Lie-bracket-based (i.e., derivative-based) averaging. The brief contains numerous examples and applications, including examples with unknown control directions and experiments with charged particle accelerators. It is intended for theoretical control engineers and mathematicians, and practitioners working in various industrial areas and in robotics.
Similar books
Feedback Stabilization of Controlled Dynamical Systems: In Honor of Laurent Praly
2017 · PDF
Optimal Control of a Double Integrator: A Primer on Maximum Principle
2017 · PDF
Elliptic Differential Equations: Theory and Numerical Treatment
2017 · PDF
Robust Control of Linear Descriptor Systems
2017 · PDF
Periodic Feedback Stabilization for Linear Periodic Evolution Equations
2016 · PDF
Regelungstechnik 2: Mehrgrößensysteme, Digitale Regelung
2016 · PDF
Variable Structure Control of Complex Systems: Analysis and Design
2017 · PDF
Consensus Problem of Delayed Linear Multi-agent Systems: Analysis and Design
2017 · PDF