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Stabilization Control Design for Network Switched System with Communication Constrains

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Abstract

Switching laws based on average dwell time method and switched state feedback controller are designed for a network switched control system with communication constrains. The networked control system is modeled as a discrete-time switched system with time delay and parametric uncertainties. If feedback control access rate is higher than the stability condition, then the designed scheduling strategy can guarantee every subsystem reaches exponential stability. Sufficient condition for exponentially stability is also presented, and the result shows systems can be stabilized under the designed switch laws. Finally, the effectiveness of the proposed approaches is demonstrated through MATLAB simulation.

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References

  1. Wen, D.L., Wand, K.S., Chen, Z.X.: Dynamic quantization H∞ control for networked control systems. Control Eng. China 20(5), 960–965 (2013)

    Google Scholar 

  2. Xu, Y., Su, H.Y., Pan, Y.J.: Stability analysis of networked control systems with round-robin scheduling and packet dropouts. J. Frankl. Inst. 350(8), 2013–2027 (2013)

    Article  MathSciNet  Google Scholar 

  3. Xie, C.X., Hu, W.L.: Analysis and design of a class of networked-control systems with long time-delay and data-packet-dropout. Control Theory Appl. 27(9), 1207–1213 (2010)

    Google Scholar 

  4. Dong, Y., James, L.: Non-fragile guaranteed cost control for uncertain descriptor systems with time-varying state and input delays. Opt. Control Appl. Methods 26(2), 85–105 (2005)

    Article  MathSciNet  Google Scholar 

  5. Zhang, H., Wu, Z.J., Xia, Y.Q.: Exponential stability of stochastic systems with hysteresis switching. Automatica 50(2), 599–606 (2014)

    Article  MathSciNet  Google Scholar 

  6. Zhai, S.D., Yang, X.S.: Exponential stability of time-delay feedback switched systems in the presence of asynchronous switching. J. Frankl. Inst. 350(1), 34–49 (2013)

    Article  MathSciNet  Google Scholar 

  7. Wang, M., Fan, Y.G., Qiu, J.B.: Static output feedback control of saturated uncertain discrete-time switched systems with average dwell-time. Control Decis. 25(10), 1479–1483 (2010)

    MathSciNet  Google Scholar 

  8. Zhao, X.D., Yu, Q., Zhang, J.F., et al.: A novel approach to stability analysis for switched positive linear systems. J. Frankl. Inst. 351(7), 3883–3898 (2014)

    Article  MathSciNet  Google Scholar 

  9. He, T., Zhang, X.M., Zhou, R.J.: Fuzzy control for networked systems via average dwell-time method. Chin. J. Eng. Math. 30(2), 184–196 (2013)

    MathSciNet  Google Scholar 

  10. Fu, J., Ma, R.C., Chai, T.Y.: Global finite-time stabilization of a class of switched nonlinear systems with the powers of positive odd rational numbers. Automatica 54(4), 360–373 (2015)

    Article  MathSciNet  Google Scholar 

  11. Lu, Q.G., Zhang, L.X., Karimi, H.R., et al.: H∞ control for asynchronously switched linear parameter-varying systems with mode-dependent average dwell time. IET Control Theory Appl. 7(5), 673–683 (2013)

    Article  MathSciNet  Google Scholar 

  12. Zhu, X.C., Zhou, C., Chen, Q.W.: Model-based average dwell time scheduling and control for networked control system. Control Theory Appl. 32(1), 86–92 (2015)

    Google Scholar 

  13. Ren J., Zhou C.: Simulations design of dynamic scheduling and quantized control for networked control system with communication constraints. 31st Chinese Process Control Conference 03, 20–25 (2013)

    Google Scholar 

  14. Du, M.L., Zhou, C., Chen, Q.W., Ren, J.: Coordinate design of dynamic scheduling and H-infinity control for networked control systems with communication constraints. Control Theory Appl. 29(9), 1132–1138 (2012)

    Google Scholar 

  15. Yu, C., Zhou, C., Chen, Q.W.: Dynamic scheduling and H∞ quantized feedback stabilization for networked control systems with communication constraints. Journal of Central South University 44(1), 103–108 (2013)

    Google Scholar 

  16. Dai, S.L., Lin, H., Ge, S.S.: A switched system approach to scheduling of networked control systems with communication constraints. In: Proceedings of the Joint 48th IEEE Conference on Decision and Control and 28th Chinese Control Conference, Shanghai, China, pp. 4991–4996 (2009)

    Google Scholar 

  17. Lin, J.X., Fei, S.M.: Robust exponential admissibility of uncertain switched singular time-delay systems. Acta Autom. Sin. 36(12), 1773–1779 (2010)

    Article  MathSciNet  Google Scholar 

  18. Tong, S.C., Tang, J.T., Wang, T.: Fuzzy adaptive control for multivariable nonlinear systems. Fuzzy Sets Syst. 111(2), 153–167 (2000)

    Article  MathSciNet  Google Scholar 

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Correspondence to Yuheng Pan .

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© 2018 ICST Institute for Computer Sciences, Social Informatics and Telecommunications Engineering

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Liu, Y., Pan, Y., Lu, W., Xue, Z. (2018). Stabilization Control Design for Network Switched System with Communication Constrains. In: Li, C., Mao, S. (eds) Wireless Internet. WiCON 2017. Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering, vol 230. Springer, Cham. https://doi.org/10.1007/978-3-319-90802-1_41

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  • DOI: https://doi.org/10.1007/978-3-319-90802-1_41

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  • Publisher Name: Springer, Cham

  • Print ISBN: 978-3-319-90801-4

  • Online ISBN: 978-3-319-90802-1

  • eBook Packages: Computer ScienceComputer Science (R0)

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