Finite-Time Performance Enhanced Bounded Control for Linear Systems With
Input Saturation
Abstract
Real-world dynamical control systems are often subject to input
saturation due to the physical constraints of actuators. This causes the
response performance of the system to be reduced due to the effect of
input saturation. To this end, we propose a finite-time performance
enhanced bounded control (FTPE-BC) method based on sliding mode control
for finite time tracking of linear systems with input saturation. In
this method, an approach rate based on inverse tangent function is
proposed to make the system converge in finite time. A bounded
controller based on sliding mode control is proposed, in which two
control parameters are introduced to reduce steady-state error, settling
time and overshoot. Meanwhile, the finite-time stability of the system
is proved in a domain of attraction. The parameters selection principle
of the controller is given to improve the transient and steady-state
performance of the closed-loop system. The simulation results verify the
superiority of the proposed method in the transient and steady-state
performance enhancement.