TY - JOUR
T1 - Periodic event-triggered state-feedback control for discrete-time linear systems
AU - Yu, Hao
AU - Hao, Fei
PY - 2016/5/1
Y1 - 2016/5/1
N2 - This paper investigates the periodic event-triggered control for discrete-time linear systems. The discrete-time plant denotes a combination of the continuous-time controlled plant, the sensors and the actuator. A general packaged component, event machine, is introduced to conduct the detection and judgement of the events. Then the periodic event-triggered control for the discrete-time system including a discrete-time plant, an event machine, a transmitter and a continuous static controller, exhibits some different behaviors from that for the continuous-time system. Especially, in this system, the sampling sequences and the event-verifying sequences may be independent from each other. Furthermore, according to the difference between the two sequences, the periodic event-triggered control system is classified into three cases, and the corresponding models are established for the three cases: a discrete-time perturbed linear system, a discrete time-delay system and a switched system, respectively. Moreover, the stability conditions for the three cases are proposed. Finally, a numerical example is given to illustrate the efficiency and feasibility of the obtained results. 2016 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
AB - This paper investigates the periodic event-triggered control for discrete-time linear systems. The discrete-time plant denotes a combination of the continuous-time controlled plant, the sensors and the actuator. A general packaged component, event machine, is introduced to conduct the detection and judgement of the events. Then the periodic event-triggered control for the discrete-time system including a discrete-time plant, an event machine, a transmitter and a continuous static controller, exhibits some different behaviors from that for the continuous-time system. Especially, in this system, the sampling sequences and the event-verifying sequences may be independent from each other. Furthermore, according to the difference between the two sequences, the periodic event-triggered control system is classified into three cases, and the corresponding models are established for the three cases: a discrete-time perturbed linear system, a discrete time-delay system and a switched system, respectively. Moreover, the stability conditions for the three cases are proposed. Finally, a numerical example is given to illustrate the efficiency and feasibility of the obtained results. 2016 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.
UR - http://www.scopus.com/inward/record.url?scp=84964200264&partnerID=8YFLogxK
U2 - 10.1016/j.jfranklin.2016.03.002
DO - 10.1016/j.jfranklin.2016.03.002
M3 - Article
AN - SCOPUS:84964200264
SN - 0016-0032
VL - 353
SP - 1809
EP - 1828
JO - Journal of the Franklin Institute
JF - Journal of the Franklin Institute
IS - 8
ER -