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Volume 39 Issue 9
Sep.  2017
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Article Contents
WEI Shi-yong, WEI Si-mi, YANG Zhi-tao. Design of networked predictive control system based on secure transmission strategy[J]. Chinese Journal of Engineering, 2017, 39(9): 1403-1411. doi: 10.13374/j.issn2095-9389.2017.09.014
Citation: WEI Shi-yong, WEI Si-mi, YANG Zhi-tao. Design of networked predictive control system based on secure transmission strategy[J]. Chinese Journal of Engineering, 2017, 39(9): 1403-1411. doi: 10.13374/j.issn2095-9389.2017.09.014

Design of networked predictive control system based on secure transmission strategy

doi: 10.13374/j.issn2095-9389.2017.09.014
  • Received Date: 2016-11-09
  • To ensure the integrity, real-time performance, confidentiality and usability of data transmission in networked control systems and improve the ability of the system against data attacks, a data transmission strategy based on the MD5 hash code, time stamp, and AES encryption algorithm was proposed. This strategy takes into account the security and real-time of data transmission of both the controlled object side and the controller side of the networked control system. And the networked predictive control based on round trip time delay was used to compensate for the effect on the system after it had been attacked by data, so that the system can be stably controlled after being attacked by some intensity of data and also achieves a better control effect, thereby improving the ability of network control systems to deal with attacks. The S100-1 training platform pipeline pressure control system is used to prove that the proposed networked predictive control system based on the secure transmission strategy has better security and anti-attack ability.

     

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  • [1]
    You K Y, Xie L H. Survey of recent progress in networked control systems. Acta Automatica Sinica, 2013, 39(2):101
    [2]
    Bai J J, Su H Y, Gao J F, et al. Modeling and stabilization of a wireless network control system with packet loss and time delay. J Franklin Inst, 2012, 349(7):2420
    [3]
    Luo R C, Su K L, Shen S H, et al. Networked intelligent robots through the Internet:issues and opportunities. Proceedings of the IEEE, 2003, 91(3):371
    [4]
    Tsai Choi K S, Jo J H, Sin C S, et al. Design of the network control system for OBS satellite communications system//Proceedings of the 8th International Conference Advanced Communication Technology (ICACT). IEEE, 2006:875
    [6]
    Nilsson J. Real-Time Control Systems with Delays[Dissertation]. Sweden:Department of Automatic Control Lund Institute of Technology, 1998
    [7]
    Yi J Q, Wang Q, Zhao D B, et al. BP neural network predictionbased variable-period sampling approach for networked control systems. Appl Mathematics Comput, 2007, 185(2):976
    [8]
    Li F, Wang X, Shi P. Robust quantized H∞ control for network control systems with Markovian jumps and time delays. Int J Innovative Computing Inf Control, 2013, 9(12):4889
    [9]
    Feng J, Wang S Q. Reliable fuzzy control for a class of nonlinear networked control systems with time delay. Acta Automatica Sinica, 2012, 38(7):1091
    [10]
    Liu G P, Mu J X, Rees D, et al. Design and stability analysis of networked control systems with random communication time delay using the modified MPC. Int J Control, 2006, 79(4):288
    [11]
    Yuan K Y, Chen J, Liu G P, et al. Design and implementation of data encryption for networked control systems//IEEE International Conference on Systems, Man and Cybernetics. IEEE, 2009:2105
    [12]
    Gupta R A, Chow M Y. Performance assessment and compensation for secure networked control systems//Proceeding of the 34th Annual Conference of IEEE Industrial Electronics. IEEE, 2008:2929
    [13]
    Cao H Y, Chen K, Zhu P D. Secure process control system of industrial networks//Proceedings of the 15th IEEE International Conference on Communication Technology (ICCT). IEEE, 2013:15
    [14]
    Hu W S, Liu G P, Rees D. Networked predictive control over the Internet using round-trip delay measurement. IEEE Trans Instrum Meas, 2008, 57(10):2231
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