Boundary control of an axially moving accelerated/decelerated belt system
DOI10.1002/rnc.3538zbMath1351.93105OpenAlexW2296397056MaRDI QIDQ5298480
Publication date: 15 December 2016
Published in: International Journal of Robust and Nonlinear Control (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/rnc.3538
boundary controldisturbance observerbackstepping techniqueaxially moving belthigh-acceleration/deceleration
Control/observation systems governed by partial differential equations (93C20) Lyapunov and other classical stabilities (Lagrange, Poisson, (L^p, l^p), etc.) in control theory (93D05) Vibrations in dynamical problems in solid mechanics (74H45) Observability (93B07)
Related Items (16)
Cites Work
- Unnamed Item
- Unnamed Item
- Robust adaptive control of a thruster assisted position mooring system
- Robust adaptive boundary control of a flexible marine riser with vessel dynamics
- Tracking control for boundary controlled parabolic PDEs with varying parameters: combining backstepping and differential flatness
- A toolkit for nonlinear feedback design
- Active control of flexible systems
- Backstepping boundary control of Burgers' equation with actuator dynamics
- An iterative learning algorithm for boundary control of a stretched moving string
- Stability of partial difference equations governing control gains in infinite-dimensional backstepping
- Backstepping boundary control for first-order hyperbolic PDEs and application to systems with actuator and sensor delays
- Backstepping approach to the arbitrary decay rate for Euler–Bernoulli beam under boundary feedback
- Systematization of approaches to adaptive boundary stabilization of PDEs
- Boundary Control of PDEs
- Robust and adaptive boundary control of a stretched string on a moving transporter
- Arbitrary Decay Rate for Euler-Bernoulli Beam by Backstepping Boundary Feedback
- Nonlinear control under wave actuator dynamics with time‐ and state‐dependent moving boundary
- Adaptive vibration isoloation for axially moving strings: theory and experiment.
This page was built for publication: Boundary control of an axially moving accelerated/decelerated belt system