Markov-Chain-Based Output Feedback Control for Stabilization of Networked Control Systems with Random Time Delays and Packet Losses

被引:37
作者
Dong, Jiawei [1 ]
Kim, Won-jong [1 ]
机构
[1] Texas A&M Univ, Dept Mech Engn, College Stn, TX 77843 USA
关键词
Asymptotic mean-square stability; Markov chains; networked control systems; packet losses; random time delays; H-INFINITY CONTROL; STABILITY;
D O I
10.1007/s12555-012-0519-x
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 paper proposes an output feedback method to stabilize and control networked control systems (NCSs). Random time delays and packet losses are treated separately when an NCS is modeled. The random time delays in the controller-to-actuator and sensor-to-controller links are modeled with two time-homogeneous Markov chains, while the packet losses are treated by the Dirac delta functions. An asymptotic mean-square stability criterion is established to compensate for the network-induced random time delays and packet losses in both the controller-to-actuator and sensor-to-controller links simultaneously. An algorithm to implement the asymptotic mean-square stability criterion is also proposed. Further, a DC-motor speed-control test bed with Ethernet using User Datagram Protocol (UDP) is constructed and employed for experimental verification. Two sets of experiments, with and without 10% packet losses in the links, are conducted on this NCS. Experimental results illustrate the effectiveness of the proposed output feedback method compared to conventional controllers. This method could compensate for the effects of the random time delays and packet losses and guarantee the system performance and stability. The integral time and absolute error (ITAE) of the experiments without packet losses is reduced by 13% with the proposed method, and the ITAE of experiments with 10% packet losses, by 30%. The NCS can track the reference command faithfully with the proposed method when random time delays and packet losses exist in the links, whereas the NCS fails to track the reference command with the conventional control algorithms.
引用
收藏
页码:1013 / 1022
页数:10
相关论文
共 28 条
  • [1] [Anonymous], 1998, Real-Time Control Systems with Delays
  • [2] Hespanha J.P., 2000, 5 PHANTOM USERS GROU, P9
  • [3] Hikichi K, 2002, GLOB TELECOMM CONF, P1492
  • [4] Stabilization of Discrete-Time Networked Control Systems with Partly Known Transmission Delay: A New Augmentation Approach
    Hu, Song-Lin
    Liu, Jin-Liang
    Du, Zhao-Ping
    [J]. INTERNATIONAL JOURNAL OF CONTROL AUTOMATION AND SYSTEMS, 2011, 9 (06) : 1080 - 1085
  • [5] Ji K, 2005, INT J CONTROL AUTOM, V3, P591
  • [6] H∞ Control for Networked Systems with Data Packet Dropout
    Jia, Tinggang
    Niu, Yugang
    Wang, Xingyu
    [J]. INTERNATIONAL JOURNAL OF CONTROL AUTOMATION AND SYSTEMS, 2010, 8 (02) : 198 - 203
  • [7] STABILITY OF LINEAR FEEDBACK-SYSTEMS WITH RANDOM COMMUNICATION DELAYS
    KRTOLICA, R
    OZGUNER, U
    CHAN, H
    GOKTAS, H
    WINKELMAN, J
    LIUBAKKA, M
    [J]. INTERNATIONAL JOURNAL OF CONTROL, 1994, 59 (04) : 925 - 953
  • [8] Lee M. H., 2009, THESIS TEXAS A M U C
  • [9] Design and stability analysis of networked control systems with random communication time delay using the modified MPC
    Liu, GP
    Mu, JX
    Rees, D
    Chai, SC
    [J]. INTERNATIONAL JOURNAL OF CONTROL, 2006, 79 (04) : 288 - 297
  • [10] Practical issues in networked control systems
    Lopez, I.
    Piovesan, J. L.
    Abdallah, C. T.
    Lee, D.
    Martinez, O.
    Spong, M.
    Sandoval, R.
    [J]. 2006 AMERICAN CONTROL CONFERENCE, VOLS 1-12, 2006, 1-12 : 4201 - 4206