feedback;
uncertain systems;
robust control;
adaptive control;
nonlinear control systems;
sampled data systems;
control system synthesis;
closed loop systems;
delays;
continuous time systems;
discrete time systems;
single-input single-output systems (control);
uncertain single-input single-output linear time-invariant sampled-data systems;
uncertain input time delay;
constant input time delay;
unknown time delay;
reduction approach;
delay-free system;
control law design;
system output;
uncertain input delay;
discrete-time adaptive control approach;
bounded exogenous disturbances;
stability analysis;
LINEAR-SYSTEMS;
DISTRIBUTED-DELAY;
STABILITY;
STABILIZATION;
D O I:
10.1049/iet-cta.2019.1440
中图分类号:
TP [自动化技术、计算机技术];
学科分类号:
0812 ;
摘要:
This study proposes a discrete-time adaptive control approach for uncertain single-input single-output linear time-invariant sampled-data systems with uncertain, constant input time delay that has a known upper-bound, without explicitly estimating the time delay. To cope with the unknown time delay, a reduction approach similar to that proposed by Artstein in 1982 is used, which results in a delay-free system that simplifies the control law design. In addition, the proposed control approach is capable of coping with bounded exogenous disturbances. A rigorous stability analysis shows that the proposed control approach drives the system output to a bound around the reference signal asymptotically, in the presence of an exogenous disturbance. Moreover, simulation results are shown to verify the approach.