Title :
Finite Time Stabilization of a Perturbed Double Integrator—Part I: Continuous Sliding Mode-Based Output Feedback Synthesis
Author :
Orlov, Yury ; Aoustin, Yannick ; Chevallereau, Christine
Author_Institution :
Electron. & Telecom munication Dept., CICESE Res. Center, San Diego, CA, USA
fDate :
3/1/2011 12:00:00 AM
Abstract :
The twisting and supertwisting algorithms, generating important classes of second order sliding modes (SOSMs), are well-recognized for their finite time stability and robustness properties. In the present paper, a continuous modification of the twisting algorithm and an inhomogeneous perturbation of the supertwisting algorithm are introduced to extend the class of SOSM´s that present the afore-mentioned attractive features. Thus modified, the twisting and supertwisting algorithms are utilized in the state feedback synthesis and, respectively, velocity observer design, made for the finite time stabilization of a double integrator if only output measurements are available. Performance and robustness issues of the resulting output feedback synthesis are illustrated by means of numerical simulations.
Keywords :
continuous systems; control system synthesis; feedback; observers; perturbation techniques; robust control; variable structure systems; continuous sliding mode based output feedback synthesis; finite time stabilization; perturbed double integrator; robustness property; supertwisting algorithm; twisting algorithm; velocity observer; Second order sliding modes (SOSMs);
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2010.2090708