用户名: 密码: 验证码:
Networked Control Systems Analysis and Design: An Overview
详细信息    查看全文
  • 作者:Magdi S. Mahmoud
  • 关键词:Networked control systems ; Lyapunov–Krasovskii stability theory ; Quantizer ; Delay systems ; LMI ; Event ; triggering ; Cloud control systems ; Cloud computing
  • 刊名:Arabian Journal for Science and Engineering
  • 出版年:2016
  • 出版时间:March 2016
  • 年:2016
  • 卷:41
  • 期:3
  • 页码:711-758
  • 全文大小:4,571 KB
  • 参考文献:1.Mahalik N.N.P., Kim K.K.: A prototype for hardware-in-the-loop simulation of a distributed control architecture. IEEE Trans. Syst. Man Cybern. C Appl. Rev. 38(2), 189–200 (2008)CrossRef
    2.Gupta, R. A.; Chow, M.-Y.: Networked control system: overview and research trends. IEEE Trans. Ind. Electro. 57(7) (2010)
    3.Ogren P., Fiorelli E., Leonard N.E.: Cooperative control of mobile sensor networks: adaptive gradient climbing in a distributed environment. IEEE Trans. Autom. Control 49(8), 1292–1302 (2004)MathSciNet CrossRef
    4.Meng C., Wang T., Chou W., Luan S., Zhang Y., Tian Z.: Remote surgery case: Robot-assisted teleneurosurgery. IEEE Int. Conf. Robot. Autom. (ICRA 04(1), 819–823 (2004)
    5.Hespanha, J.P.; McLaughlin, M.L.; Sukhatme, G.: Haptic collaboration over the Internet. In: Proceedings of 5th Phantom Users Group Workshop, Oct. (2000)
    6.Hikichi K., Morino H., Arimoto I., Sezaki K., Yasuda Y.: The evaluation of delay jitter for haptics collaboration over the Internet. Proc. IEEE Glob. Telecomm. Conf. (GLOBECOM) 2, 1492–1496 (2002)
    7.Shirmohammadi, S.; Woo, N.H.: Evaluating decorators for haptic collaboration over the Internet. In: Proceedings of 3rd IEEE International Workshop Haptic, Audio and Visual Environments and Applications, pp. 105–109 (2004)
    8.Seiler P., Sengupta R.: Analysis of communication losses in vehicle control problems. Proc. Am. Control Conf. 2, 1491–1496 (2001)CrossRef
    9.Seiler P., Sengupta R.: An \({{\mathcal{H}}_\infty }\) approach to networked control. IEEE Trans. Automat. Control 50(3), 356–364 (2005)MathSciNet CrossRef
    10.Mahmoud M.S.: Control and Estimation Methods over Communication Networks. Springer, London (2014)CrossRef
    11.Mahmoud M.S., Nounou H.N., Xia Y.: Robust dissipative control for Internet-based switching systems. J. Frankl. Inst. 347(1), 154–172 (2010)MathSciNet MATH CrossRef
    12.Grzybowski J.M.V., Rafikov M., Balthazar J.M.: Synchronization of the unified chaotic system and application in secure communication. Commun. Nonlinear Sci. Numer. Simul. 14(6), 2793–2806 (2009)MathSciNet MATH CrossRef
    13.Rafikov M., Balthazar J.M.: On control and synchronization in chaotic and hyperchaotic systems via linear feedback control. Commun. Nonlinear Sci. Numer. Simul. 14(7), 1246–1255 (2008)MathSciNet MATH CrossRef
    14.Montestruque L.A., Antsaklis P.J.: On the model-based control of networked systems. Automatica 39(10), 1837–1843 (2003)MathSciNet MATH CrossRef
    15.Seiler P., Sengupta R.: Analysis of communication losses in vehicle control problems. Proc. Am. Control Conf. 2, 1491–1496 (2001)CrossRef
    16.Branicky M.S., Phillips S.M., Zhang W.: Stability of networked control systems: explicit analysis of delay. Proc. Amer. Contr. Conf. 4, 2352–2357 (2000)
    17.Zhang, W.; Branicky, M.S.: Stability of networked control systems with time-varying transmission period. Allerton Conference on Communication, Control and Computing, Urbana, IL (2001)
    18.Lian, F.L.; Moyne, J.; Tilbury, D.: Network design consideration for distributed control systems. IEEE Trans. Control Syst. Technol. 10(2) (2002)
    19.Tipsuwan Y., Chow M.Y.: Control methodologies in networked control systems. Control Eng. Pract. 11, 1099–1111 (2003)CrossRef
    20.Zhang W., Branicky M.S., Phillips S.M.: Stability of networked control systems. IEEE Trans. Control Syst. Mag. 9, 84–99 (2001)CrossRef
    21.Gupta, R.A., Chow, M.Y.: Networked control system: overview and research trends. IEEE Trans. Ind. Electron. 57(7) (2010)
    22.Zampieri, S.: Trends in networked control systems. In: Proceedings of the 17th World Congress, Seoul, Korea, pp. 2886–2894 (2008)
    23.Schenato, L.; Sinopoli, B.; Franceschetti, M.; Poolla, K.; Sastry, S.S.: Foundations of control and estimation over lossy networks. Proc. IEEE 95(1) (2007)
    24.Antsaklis, P.; Baillieul, J.: Special issue on technology of networked control systems. Proc. IEEE 95(1), (2007)
    25.Tabbara, M.; Nesic, D.: Stability of networked control systems with stochastic protocols. In: Proceedings of 2007 American Control Conference, pp. 1717–1722 (2007)
    26.Maurice W.P., Heemels H., Teel A.R., van de Wouw N., Nesic D.: Networked control systems With communication constraints: tradeoffs between transmission intervals, delays and performance. IEEE Trans. Autom. Control 55(8), 1781–1796 (2010)MathSciNet CrossRef
    27.Hespanha JP, Xu YG: A survey of recent results in networked control systems. Proc. IEEE 95(1), 138–162 (2007)CrossRef
    28.Mahmoud, M.S.; Ismail, A.: Role of delay in networked control systems. In: Proceedings of the 10th IEEE International Conference on Electronics, Circuits and Systems, University of Sharjah, UAE, December 15–17, pp. 40–43 (2003)
    29.Mahmoud M.S., Al-Rayyah A.Y.: Efficient parameterization to stability and feedback synthesis of linear time-delay systems. IET Control Theory Appl. 3(8), 1107–1118 (2009)MathSciNet CrossRef
    30.Stilwell D.J., Bishop B.E.: Platoons of underwater vehicles. IEEE Control Syst. 20(6), 45–52 (2000)CrossRef
    31.Seiler P., Sengupta R.: Analysis of communication losses in vehicle control problems. Proc. Am. Control Conf. 2, 1491–1496 (2001)CrossRef
    32.Walsh G.C., Ye H., Bushnell L.G.: Stability analysis of networked control systems. IEEE Trans. Control Syst. Technol. 10(3), 438–446 (2002)CrossRef
    33.Yin, S.; Yu, L.; Zhang, W.A.: A switched system approach to networked \({H_{\infty }}\) filtering with packet losses. Circuits Syst. Signal Process. (2011)
    34.Liu, Y.; Yu, H.: Stability of networked control systems based on switched technique. In: Proceedings of the 42nd IEEE Conference on Decision and Control, pp. 1110–1113 (2003)
    35.Jing, X.-J.; Tan, D.-L.; Wang, Y.-C.: An LMI approach to stability of systems with severe time-delay. IEEE Trans. Autom. Control 49(7) (2004)
    36.Xu S., Chen T.: Robust \({H_\infty }\) control for uncertain discrete-time systems with time-varying delays via exponential output feedback controllers. Syst. Controls Lett. 51, 171–183 (2004)MATH CrossRef
    37.Nguang S.K., Shi P., Ding S.: Delay dependent fault estimation for uncertain time delay nonlinear systems: an LMI approach. Int. J. Robust Nonlinear Control 16(18), 913–933 (2006)MathSciNet MATH CrossRef
    38.Liu G.P., Xia Y.Q., Chen J., Rees D., Hu W.S.: Networked predictive control of systems with random network delays in both forward and feedback channels. IEEE Trans. Ind. Electron. 54(3), 1282–1297 (2007)CrossRef
    39.Wenan, Z.; Li, Y.; Hongbo, S.: A switched system approach to networked control systems with time-varying delays. In: Proceedings of the 27th Chinese Control Conference, Yunnan, China, pp. 424–427 (2008)
    40.Branicky M.S., Phillips S.M., Zhang W.: Stability of networked control systems: explicit analysis of delay. Proc. Am. Control Conf. Chic. 4, 2352–2357 (2000)
    41.Zhang W.-A., Yu L.: A robust control approach to stabilization of networked control systems with time-varying delays. Automatica 45, 2440–2445 (2009)MATH MathSciNet CrossRef
    42.Sun X.M., Liu G.P., Wang W., Rees D.: Stability analysis for networked control systems based on average dwell time method. Int. J. Robust Nonlinear Control 20(15), 1774–1784 (2010)MathSciNet MATH CrossRef
    43.Yu X.-G.: An LMI approach to robust \({H_\infty }\) filtering for uncertain systems with time-varying distributed delays. J. Frankl. Inst. 345, 877–890 (2008)MATH CrossRef
    44.Peng C., Tian Y.-C.: Delay-dependent robust \({H_\infty }\) control for uncertain systems with time-varying delay. J. Inf. Sci. 179, 3187–3197 (2009)MathSciNet MATH CrossRef
    45.Xia Y.Q., Fu M.Y., Yang H.J., Liu G.P.: Robust sliding-mode control for uncertain time-delay systems based on delta operator. IEEE Trans. Ind. Electron. 56(9), 3646–3655 (2009)CrossRef
    46.Zhang J.H., Xia Y.Q.: Design of static output feedback sliding mode control for uncertain linear systems. IEEE Trans. Ind. Electron. 57(6), 2161–2170 (2010)CrossRef
    47.Miranda M.F., Leite V.J.S.: Robust stabilization of polytopic discrete-time systems with time-varying state delay: a convex approach. J. Frankl. Inst. 348, 568–588 (2011)MathSciNet MATH CrossRef
    48.Yu, M.; Wang, L.; Chu, T.; Xie, G.: Stabilization of Networked Control Systems with Data Packet Dropout and Network Delays via Switching System Approach. 43rd IEEE Conference on Decision and Control (2004)
    49.Yu, M.; Wang, L.; Chu, T.; Hao, F.: An LMI Approach to Networked Control Systems with Data Packet Dropout and Transmission Delays. 43rd IEEE Conference on Decision and Control, Paradise Island, Bahamas, pp. 3545–3550 (2004)
    50.Yang F., Wang Z., Hung Y.S., Gani M.: Control for networked systems with random communication delays. IEEE Trans. Autom. Control 51(3), 511–517 (2006)MathSciNet CrossRef
    51.Mei, Y.; Wen, T.: Robust stabilization of networked control systems: an LMI approach. In: Proceedings of the 26th Chinese Control Conference, Hunan, China, pp. 59–63 (2007)
    52.Ge, Y.; Chen, Q.; Jiang, M.; Liu, Z.: Stability analysis of networked control systems with data dropout and transmission delays. In: Proceedings of the 7th World Congress on Intelligent Control and Automation, pp. 7986–7991 (2008)
    53.Dang, X.; Zhang, Q.: Stability and control design of Networked Control System with Time-varying delays and Data Packet dropout. Chinese Control and Decision Conference (CCDC 2008), pp. 1376–1379 (2008)
    54.Zhang W.-A., Yu L.: Modelling and control of networked control systems with both network-induced delay and packet-dropout. Automatica 44, 3206–3210 (2008)MATH MathSciNet CrossRef
    55.Sheng L., Pan Y.J.: Stochastic stabilization of sampled-data networked control systems. Int. J. Innov. Comput. Inf. Control 6(4), 1949–1972 (2010)
    56.Song, H.; Yu, L.; Liu, A.-D.: \({H_\infty }\) Filtering for Network-Based Systems with Communication Constraints and Packet Dropouts. In: Proceedings of the 7th Asian Control Conference, Hong Kong, (2009)
    57.Song H., Zhang W.-A., Yu L.: \({H_{\infty }}\) filtering of network-based systems with communication constraints. IET Signal Process. 4(1), 69–77 (2010)MathSciNet CrossRef
    58.Wu D., Wu J., Chen S.: Stability of networked control systems with polytopic uncertainty and buffer constraint. IEEE Trans. Autom. Control 55(5), 1202–1208 (2010)MathSciNet CrossRef
    59.Liu X., Xia Y., Mahmoud M.S., Deng Z.: Modeling and stabilization of MIMO networked control systems with network constraints. Int. J. Innov. Comput. Inf. Control 6(10), 4409–4420 (2010)
    60.Mao Z., Jiang B., Shi P.: \({H_\infty }\) filter design for a class of networked control systems via T? fuzzy-model approach. IEEE Trans. Fuzzy Syst. 18(1), 201–208 (2010)CrossRef
    61.van Schendel, J.J.C.; Donkers, M.C.F.; Heemels, W.P.M.H.; van de Wouw, N.: On dropout modeling for stability analysis of networked control systems. In: Proceedings of 2010 American Control Conference, pp. 555–561 (2010)
    62.Donkers, M.C.F.; Heemels, W.P.M.H.; Bernardini, D.; Bemporad, A.; Shereer, V.: Stability analysis of stochastic networked control systems. In: Proceedings of 2010 American Control Conference, pp. 3684–3689 (2010)
    63.Donkers M.C.F., Heemels W.P.M.H, van de Wouw N.: Stability analysis of networked control systems using a switched linear systems approach. IEEE Trans. Autom. Control 56(9), 2101–2115 (2011)MathSciNet CrossRef
    64.Cloosterman M.B.G., Hetel L., van de Wouw N., Heemels W.P.M.H., Daafouz J., Nijmeijer H.: Controller synthesis for networked control systems. Automatica 46, 1584–1594 (2010)MathSciNet MATH CrossRef
    65.Luan X., Shi P., Liu F.: Stabilization of networked control systems with random delays. IEEE Trans. Ind. Electron. 58(9), 4323–4330 (2011)CrossRef
    66.Mahmoud M.S.: Robust Control and Filtering for Time-Delay Systems. Marcel-Dekker, New-York (2000)MATH
    67.Mahmoud M.S.: Decentralized Control and Filtering in Interconnected Dynamical Systems. CRC Press, New York (2010)CrossRef
    68.Mahmoud M.S.: Switched Time-Delay Systems. Springer, New York (2010)MATH CrossRef
    69.Jiang X.F., Han Q.L., Liu S., Xue A.: A new \({H_\infty }\) stabilization criterion for networked control systems. IEEE Trans. Autom. Control 53(4), 1025–1032 (2008)MathSciNet CrossRef
    70.Srinivasagupta D., Schattler H., Joseph B.: Time-stamped model predictive control: an algorithm for control of processes with random delays. Comput. Chem. Eng. 28(8), 1337–1346 (2004)CrossRef
    71.Kim S.H., Park P.: Networked-based robust \({H_\infty }\) control design using multiple levels of network traffic. Automatica 45(3), 764–770 (2009)MathSciNet MATH CrossRef
    72.Luck R., Ray A.: An observer-based compensator for distributed delays. Automatica 26(5), 903–908 (1990)MATH CrossRef
    73.Wang Z., Ho D.W.C., Liu X.: Robust filtering under randomly varying sensor delay with variance constraints. IEEE Trans. Circuits Syst. II Exp. Briefs 51(6), 320–326 (2004)CrossRef
    74.Lin C., Wang Z.D., Yang F.W.: Observer-based networked control for continuous-time systems with random sensor delays. Automatica 45(2), 578–584 (2009)MathSciNet MATH CrossRef
    75.Mahmoud M.S., Selim S.Z., Shi P.: Global exponential stability criteria for neural networks with probabilistic delays. IET Control Theory Appl. 4(11), 2405–2415 (2011)MathSciNet CrossRef
    76.Zhang L.Q., Yang S., Chen T.W., Huang B.: A new method for stabilization of networked control systems with random delays. IEEE Trans. Autom. Control 50(8), 1177–1181 (2005)MathSciNet CrossRef
    77.Heemels, W., Teel, A., van de, W.N., Nesic, D.: Networked control systems with communication constraints: tradeoffs between transmission intervals, delays and performance. IEEE Trans. Automat. Control 55(8), 1781–1796 (2010)
    78.Yang F., Wang Z., Hung Y.S., Gani M.: \({{\mathcal{H}}_\infty }\) control for networked systems with random communication delays. IEEE Trans. Automat. Control 51(3), 511–518 (2007)MathSciNet CrossRef
    79.Yue D., Tian E., Wang Z., Lam J.: Stabilization of systems with probabilistic interval input delays and its applications to networked control systems. IEEE Trans. Syst. Man Cybern. A-Syst. Hum. 39(42), 939–945 (2009)
    80.Rivera M.G., Barreiro A.: Analysis of networked control systems with drops and variable delays. Automatica 43(9), 2054–2059 (2007)MATH MathSciNet CrossRef
    81.Xiong J., Lam J.: Stabilization of linear systems over networks with bounded packet loss. Automatica 43(1), 80–87 (2007)MathSciNet MATH CrossRef
    82.Zhang L., Shi Y., Chen T., Huang B.: A new method for stabilization of networked control systems with random delays. IEEE Trans. Automat. Control 50(8), 1177–1181 (2006)MathSciNet CrossRef
    83.Liu B., Xia Y., Mahmoud M.S., Wu H.: New predictive control scheme for networked control systems. J. Circuits Syst. Signal Process. 31(2), 945–960 (2012)MathSciNet MATH CrossRef
    84.Mahmoud M.S., Saif A.W.: Robust quantized approach to fuzzy networked control systems. IEEE. J. Emerg. Select. Top. Circuits Syst. (JETCAS) 2(1), 71–81 (2012)CrossRef
    85.Mahmoud M.S.: Improved networked control systems approach with communication constraint. IMA J. Math. Control Inf. 29(2), 215–233 (2012)MATH MathSciNet CrossRef
    86.Zhivoglyadov P., Middleton R.H.: Networked control design for linear systems. Automatica 39, 743–750 (2003)MathSciNet MATH CrossRef
    87.Mahmoud, M.S.: A novel feedback control approach for networked systems with probabilistic delays. Chapter 25 in the book Lecture Notes in Engineering and Computer Science: Proceedings of The World Congress on Engineering 2013, Gi-Chul Yang, Sio-Iong Ao and Len Gelman (Editors), pp. 355–370, (2014)
    88.Peng C., Tian Y.: Networked \({H_\infty }\) control of linear systems with state quantization. Inf. Sci. 177(24), 5763–5774 (2007)MathSciNet MATH CrossRef
    89.Niu Y., Jia T., Wang X., Yang F.: Output-feedback control design for NCSs subject to quantization and dropout. Inf. Sci. 179(21), 3804–3813 (2009)MathSciNet MATH CrossRef
    90.Tian E., Yue D., Peng C.: Quantized output feedback control for networked control systems. Inf. Sci. 178(12), 2734–2749 (2008)MathSciNet MATH CrossRef
    91.Fu M., Xie L.: The sector bound approach to quantized feedback control. IEEE Trans. Autom. Control 50(11), 1698–1711 (2005)MathSciNet CrossRef
    92.Mahmoud M.S., Al-Rayyah Ali Y., Xia Yuanqing: Quantized feedback stabilization of interconnected continuous time-delay systems. IMA J. Math Control Inf. 28(1), 1–17 (2011)MathSciNet MATH CrossRef
    93.Mahmoud M.S., Al-Rayyah Ali Y., Xia Yuanqing: Quantized feedback stabilization of interconnected discrete time-delay systems. IET Control Theory Appl. 5(6), 795–802 (2011)MathSciNet MATH CrossRef
    94.Gao H., Chen T., Lam J.: A new delay system approach to network-based control. Automatica 44(1), 39–52 (2008)MathSciNet MATH CrossRef
    95.Gao H., Chen T.: \({{\mathcal{H}}_{\infty }}\) estimation for uncertain systems with limited communication capacity. IEEE Trans. Autom. Control 52(11), 2070–2084 (2007)MathSciNet CrossRef
    96.Yue D., Han Q.: Network-based robust \({H_\infty }\) filtering for uncertain linear systems. IEEE Trans. Signal Process. 54(11), 4293–4301 (2006)MathSciNet CrossRef
    97.Dai J.: A delay system approach to networked control systems with limited communication capacity. J. Frankl. Inst. 347, 1334–1352 (2010)MATH MathSciNet CrossRef
    98.Elia N., Mitter S.K.: Stabilization of linear systems with limited information. IEEE Trans. Autom. Control 46(9), 1384–1400 (2001)MathSciNet MATH CrossRef
    99.Mahmoud M.S.: Resilient Control of Uncertain Dynamical Systems. Springer, Heidelberg (2004)MATH CrossRef
    100.Mahmoud M.S.: Estimator design for networked control systems with nonstationary packet dropouts. IMA J. Math. Control Inf. 30(3), 395–405 (2012)MathSciNet MATH CrossRef
    101.Mittal, S.; Siddiqui, A.S.: Networked control system: survey and directions, J. Eng. Res. Stud. 1(2), (2010)
    102.Matveev A., Savkin A.: The problem of state estimation via asynchronous communication channels with irregular transmission times. IEEE Trans. Automat. Control 48(4), 670–676 (2003)MathSciNet CrossRef
    103.Sinopoli B., Schenato L., Franceschetti M., Poolla K., Jordan M., Sastry S.: Kalman filtering with intermittent observations. IEEE Trans. Automatic Control 49(9), 1453–1464 (2004)MathSciNet CrossRef
    104.Xu, Y., Hespanha, J.P.: Estimation under uncontrolled and controlled communications in networked control systems. In: Proceedings of the 44th Conference on Decision and Control, pp. 842–847, (June 2005)
    105.Yook J.K., Tilbury D.M., Soparkar N.R.: Trading computation for bandwidth: reducing communication in distributed control systems using state estimators. IEEE Trans. Control Syst. Technol. 10(4), 503–518 (2002)CrossRef
    106.Yang H., Xia Y., Shi P.: Stabilization of networked control systems with nonuniform random sampling periods. Int. J. Robust Nonlinear Control 21(5), 501–526 (2011)MathSciNet MATH CrossRef
    107.Matveev A., Savkin A.: Estimation and Control Over Communication Networks. Birkhauser, pp. 5851–5856 (2009)MATH
    108.Wang F.-Y., Liu D.: Networked Control Systems Theory and Applications. Springer, London (2008)MATH CrossRef
    109.Moayedi, M.; Foo, K.; Soh, C.: Networked LQG Control over Unreliable Channels. In: Proceedings of the 49th IEEE Conference on Decision and Control, CDC 2010, Atlanta, Georgia, USA, December 15–17, pp. 5851–5856 (2010)
    110.Sinopoli B., Schenato L., Franceschetti M., Poolla K., Jordan M., Sastry S.: Optimal control with unreliable communication: the TCP case. Proc. Am. Control Conf. Portland 5, 3354–3359 (2005)
    111.Imer O.C., Yksel S., Basar T.: Optimal control of LTI systems over unreliable communication links. Automatica 42(9), 1429–1439 (2006)MathSciNet MATH CrossRef
    112.Yuksel, S.; Imer, O.C.; Basar, T.: Constrained state estimation and control over communication networks. In: Proceedings of the 38th Annual Conference on Information Science and Systems (CISS), Princeton, NJ, March (2004)
    113.Burl J.B.: Linear Optimal Control. Prentice Hall, New Jersey (1998)
    114.Mahmoud M.S., Al-Yazdi N.M., Saif A.W.: Dynamic feedback control over unreliable communication channels. IMA J. Math. Control Inf. 31(6), 195–216 (2014)MATH MathSciNet CrossRef
    115.Matveev A.S., Savkin A.V.: Optimal computer control via communication channels with irregular transmission times. Int. J. Control 76(2), 165–177 (2003)MathSciNet MATH CrossRef
    116.Zhang H.S., Xie L.H.: Control and Estimation of Systems with Input/Output Delays. Springer, Berlin (2007)MATH
    117.Mahmoud MS, Al-Yazdi NM, Saif AW: LQG control design over lossy communication links. Int. J. Syst. Sci. 31(2), 195–216 (2014)MATH MathSciNet
    118.Takagi T., Sugeno M.: Fuzzy identification of systems and its applications to modeling and control, IEEE Trans. Syst. Man Cybern. 15(1), 116–132 (1985)MATH CrossRef
    119.Tanaka K., Ikeda T., Wang H.: Robust stabilization of a class of uncertain nonlinear systems via fuzzy control: Quadratic stabilizability, H1 control theory, and linear matrix inequalities. IEEE Trans. Fuzzy Syst. 4(1), 1–13 (1996)CrossRef
    120.Guan X., Chen C.: Delay-dependent guaranteed cost control for T–S fuzzy systems with time delays. IEEE Trans. Fuzzy Syst. 12(2), 236–249 (2004)MATH CrossRef
    121.Cao Y., Frank P.: Analysis and synthesis of nonlinear time-delay systems via fuzzy control approach. IEEE Trans. Fuzzy Syst. 8(2), 200–211 (2000)CrossRef
    122.Zhou S., Li T.: Robust stabilization for delayed discrete-time fuzzy systems via basis-dependent Lyapunov–Krasovskii function. Fuzzy Sets Syst. 151(1), 139–153 (2005)MATH MathSciNet CrossRef
    123.Xu S., Lam J.: Robust \({{\mathcal{H}}_\infty }\) control for uncertain discrete-time-delay fuzzy systems via output feedback controllers. IEEE Trans. Fuzzy Syst. 13(1), 82–93 (2005)CrossRef
    124.Lee H.J., Park J.B., Chen G: Robust fuzzy control of nonlinear systems with parametric uncertainties. IEEE Trans. Fuzzy Syst. 9(2), 369–379 (2001)CrossRef
    125.Chen S., Chang W., Su S.: Robust static output-feedback stabilization for nonlinear discrete-time systems with time delay via fuzzy control approach. Fuzzy Sets Syst. 13(2), 263–272 (2005)CrossRef
    126.Cao Y., Frank P.: Robust \({{\mathcal{H}}_\infty }\) disturbance attenuation for a class of uncertain discrete-time fuzzy systems. IEEE Trans. Fuzzy Syst. 8(4), 406–415 (2000)CrossRef
    127.Wu H.: Delay-dependent stability analysis and stabilization for discrete-time fuzzy systems with state delay: a fuzzy Lyapunov–Krasovskii functional approach. IEEE Trans. Fuzzy Syst. 36(4), 954–962 (2006)
    128.Gao H., Chen T., Lam J.: A new delay system approach to network-based control. Automatica 44(1), 39–52 (2008)MathSciNet MATH CrossRef
    129.Wu J., Chen T.: Design of networked control systems with packet dropouts. IEEE Trans. Automat. Control. 52(7), 1314–1319 (2007)MathSciNet CrossRef
    130.Zhang A., Yu L.: Output feedback stabilization of networked control systems with packet dropouts. IEEE Trans. Automat. Control 52(9), 1705–1710 (2007)MathSciNet CrossRef
    131.Zhang L., Shi Y., Chen T., Huang B.: A new method for stabilization of networked control systems with random delays. IEEE Trans. Automat. Control 50(8), 1177–1181 (2005)MathSciNet CrossRef
    132.Tian E., Yue D., Peng C.: Quantized output feedback control for networked control systems. Inf. Sci. 178, 2734–2749 (2008)MathSciNet MATH CrossRef
    133.Yue D., Peng C., Tang G.: Guaranteed cost control of linear systems over networks with state and input quantizations. IET Control Theory Appl. 153(6), 658–664 (2006)MathSciNet CrossRef
    134.Chen P., Yu C.: Networked \({{\mathcal{H}}_\infty }\) control of linear systems with state quantization. Inf. Sci. 177, 5763–5774 (2007)MATH MathSciNet CrossRef
    135.Mahmoud M.S.: Delay-dependent \({{\mathcal{H}}_\infty }\) filtering of a class of switched discrete-time state-delay systems. J. Signal Process. 88(11), 2709–2719 (2008)MATH CrossRef
    136.Mahmoud M.S., Saif A.W., Shi P.: Stabilization of linear switched delay systems: \({{\mathcal{H}}_2}\) and \({{\mathcal{H}}_\infty }\) methods. J. Opt. Theory Appl. 142(3), 583–607 (2009)MathSciNet MATH CrossRef
    137.Zhang J., Xia Y., Mahmoud M.S.: Robust generalized \({{\mathcal{H}}_2}\) and \({{\mathcal{H}}_\infty }\) static output feedback control for uncertain discrete-time fuzzy systems. IET Control Theory Appl. 3(7), 865–876 (2009)MathSciNet CrossRef
    138.Gao H., Shi P., Wang J.: Parameter-dependent robust stability of uncertain time-delay systems. Comput. Appl. Math. 206, 366–373 (2007)MathSciNet MATH CrossRef
    139.Gao H., Lam J., Wang C., Wang Y.: Delay-dependent output-feedback stabilization of discrete-time systems with time-varying state delay. IEE Proc. Control Theory Appl. 151(6), 691–698 (2004)MathSciNet CrossRef
    140.Gao H., Chen T.: A new approach to quantized feedback control systems. Automatica 44, 534–542 (2008)MathSciNet MATH CrossRef
    141.Walsh G., Ye H.: Scheduling of networked control systems. IEEE Control Syst. Mag. 21(1), 57–65 (2001)CrossRef
    142.Zhang H., Yang D., Chai T.: Guaranteed cost networked control for T–S fuzzy systems with time-delays. IEEE Trans. Syst. Man Cybern. C: Appl. Rev. 37(2), 160–172 (2007)CrossRef
    143.Zhang L., Fang H.: Fuzzy controller design for networked control system with time-variant delays. J. Syst. Eng. Electron. 17(1), 172–176 (2006)MATH CrossRef
    144.Jiang X., Han Q.: On designing fuzzy controllers for a class of nonlinear networked control systems. IEEE Trans. Fuzzy Syst. 16(4), 1050–1060 (2008)CrossRef
    145.Montagner, V.F.; Leite, V.J.S.; Tarbouriech, S.; Peres, P.L.D.: Stability and stabilization of discrete-time linear systems with state-delay. In: Proceedings of American Control Conference, Portland, Oregon, June 8–11, pp. 3806–3811 (2005)
    146.Zhang L., Shi P., Boukas E.K.: \({{\mathcal{H}}_\infty }\) output-feedback control for switched linear discrete-time systems with time-varying delays. Int. J. Control 80, 1354–1365 (2007)MathSciNet MATH CrossRef
    147.Mahmoud M.S., Saleh S.J.: Regulation of water quality standards in streams by decentralized control. Int. J. Control 41, 525–540 (1985)MathSciNet MATH CrossRef
    148.Hetel L., Daafouz J., Lung C.: Analysis and control of LTI and switched systems in digital loops via an event-based modeling. Int. J. Control 81(7), 1125–1138 (2008)MATH CrossRef
    149.Shi Y., Yu B.: Robust mixed \({{\mathcal{H}}_2/{\mathcal{H}}_\infty }\) control of networked control systems with random time delays in both forward and backward communication links. Automatica 47(4), 754–760 (2011)MathSciNet MATH CrossRef
    150.Ghaoui L.E., Oustery F., Aitrami M.: A cone complementarity linearization algorithm for static output feedback and related problems. IEEE Trans. Autom. Control 42(8), 1171–1176 (1997)MATH MathSciNet CrossRef
    151.Boyd S, Ghaoui L.E., Feron E., Balakrishnan V.: Linear Matrix Inequalities in Systems and Control Theory. SIAM, Philadelphia (1994)MATH CrossRef
    152.Gao H., Chen T., Lam J.: A new delay system approach to network-based control. Automatica 44, 39–52 (2008)MathSciNet MATH CrossRef
    153.Mahmoud M.S., Selim S.Z., Shi P.: Global exponential stability criteria for neural networks with probabilistic delays. IET Control Theory Appl. 4(11), 2405–2415 (2011)MathSciNet CrossRef
    154.Hu L.S., Bai T., Shi P., Wu Z.: Sampled-data control of networked linear control systems. Automatica 43, 903–911 (2007)MathSciNet MATH CrossRef
    155.Zhang W., Branicky M.S., Phillips S.M.: Stability of networked control systems? IEEE Control Syst. Mag. 21, 84–99 (2001)CrossRef
    156.Luan X., Shi P., Liu F.: Stabilization of networked control systems with random delays. IEEE Trans. Ind. Electron. 58(9), 4323–4330 (2011)CrossRef
    157.Yue D., Han Q., Lam J.: Network-based robust \({H_\infty }\) control of systems with uncertainty. Automatica 41(6), 999–1007 (2005)MathSciNet MATH CrossRef
    158.Sinopoli B., Schenato L., Franceschetti M., Poolla K., Jordan M., Sastry S.: Kalman filtering with intermittent observations. IEEE Trans. Autom. Control 49(9), 1453–1464 (2004)MathSciNet CrossRef
    159.Gao H., Chen T.: \({H_\infty }\) estimation for uncertain systems with limited communication capacity. Autom. Control IEEE Trans. 52(11), 2070–2084 (2007)MathSciNet CrossRef
    160.Gao H., Chen T., Lam J.: A new delay system approach to network-based control. Automatica 44(1), 39–52 (2008)MathSciNet MATH CrossRef
    161.Mahmoud M.S., Saif A.W., Shi P.: Stabilization of linear switched delay systems: \({H_2}\) and \({H_\infty }\) Methods. J. Opt. Theory Appl. 142(3), 583–607 (2009)MathSciNet MATH CrossRef
    162.Tian E., Yue D., Zhao X.: Quantized control design for networked control systems. IET Control Theory Appl. 1(6), 1693–1699 (2007)CrossRef
    163.Zhang L.Q., Yang S., Chen T.W., Huang B.: A new method for stabilization of networked control systems with random delays. IEEE Trans. Automat. Control 50(8), 1177–1181 (2005)MathSciNet CrossRef
    164.Heemels W., Teel A., van de Wouw N., Nesic D.: Networked control systems with communication constraints: tradeoffs between transmission intervals, delays and performance. IEEE Trans. Automat. Control 55(8), 1781–1796 (2010)MathSciNet CrossRef
    165.Yang F., Wang Z., Ho D.W.C., Gani M.: Robust \({{\mathcal{H}}_\infty }\) control with missing measurements and time delays. IEEE Trans. Automat. Control 52(9), 1666–1672 (2007)MathSciNet CrossRef
    166.Yang F., Wang Z., Hung Y.S., Gani M.: \({{H}_\infty }\) control for networked systems with random communication delays. IEEE Trans. Automat. Control 51(3), 511–518 (2007)MathSciNet CrossRef
    167.Gupta P., Kumar P.R.: The capacity of wireless networks. IEEE Trans. Inf. 46, 388–404 (2000)MathSciNet MATH CrossRef
    168.Al-Nasser, F.A.: Decentralized Control Strategies over Communication Constraints. Ph. D. Dissertation, KFUPM, December (2012)
    169.Sabih, M.: Decentralized Control Strategies Over Communication Constraints, Ph. D. Dissertation, KFUPM, December (2013)
    170.Hendricks E., Jensen M., Chevalier A., Vesterholm, T.: Problems in event based engine control. In: Proceedings of American Control Conference, vol. 2, pp. 1585–1587 (1994)
    171.Heemels W.P.M.H., Gorter R.J.A., van Zijl A., van den Bosch P.P.J., Weiland S., Hendrix W.H.A., Vonder M.R.: Asynchronous measurement and control: a case study on motor synchronization. Control Eng. Pract. 7, 1467–1482 (1999)CrossRef
    172.Astrom, K.J.: Event based control. In: Analysis and design of nonlinear control systems, Part 3, pp. 127–147 (2008)
    173.Meng, X.; Chen, T.: Even-based stabilization over networks with transmission delays. J. Control Sci. Eng. (Article ID 212035), (2012). doi:10.​1155/​2012/​212035
    174.Tabuada P.: Event-triggered real-time scheduling of stabilizing control tasks. IEEE Trans. Autom. Control 52(9), 1680–1685 (2007)MathSciNet CrossRef
    175.Heemels W.P.M.H., Sandee J.H., VanDen Bosch P.P.J.: Analysis of event-driven controllers for linear systems. Int. J. Control 81(4), 571–590 (2008)MathSciNet MATH CrossRef
    176.Velasco, M.; Martl, P.; Bini E.: Control-driven tasks: modeling and analysis. In: Proceedings of the Real-Time Systems Symposium, Barcelona, Spain, pp. 280–290 (2008)
    177.Mazo, M.; Tabuada, P.: On event-triggered and self-triggered control over sensor/actuator networks. In: Proceedings of the 47th IEEE Conference on Decision and Control, (CDC08), Cancun, Mexico, pp. 435–440 (2008)
    178.Karl H., Willig A.: Protocols and Architectures for Wireless Sensor Networks. Wiley, New Jersey (2005)CrossRef
    179.Cervin, A.; Henningsson, T.: Scheduling of event-triggered controllers on a shared network. In: Proceedings of 47th IEEE Control on Decision and Control, Cancun, Mexico, Dec. (2008)
    180.Ploennigs J., Buchholz P., Neugebauer M., Kabitzsch K.: Automated modeling and analysis of CSMA type access-schemes for building automation networks. IEEE Trans. Ind. Inform. 2(2), 103–111 (2006)CrossRef
    181.Kaufman, E.; Braslavsky, J.H.: Level crossing sampling in feedback stabilization under data-rate constraints. In: Proceedings of the 45th IEEE Conference on Decision and Control, San Diego, CA, USA, pp. 4423–4428 (2006)
    182.Yue D., Han Q.: Network-based robust \({{\mathcal{H}}_\infty }\) filtering for uncertain linear systems. IEEE Trans. Signal Process. 54, 4293–4301 (2006)CrossRef
    183.Xia Y.Q., Fu M.Y., Liu G.P.: Analysis and Synthesis of Networked Control Systems. Springer, Berlin (2014)MATH
    184.Zhang H.S., Xie L.H.: Control and Estimation of Systems with Input/Output Delays. Springer, Berlin (2007)MATH
    185.Hetel L., Daafouz J., Lung C.: Analysis and control of LTI and switched systems in digital loops via an event-based modeling. Int. J. Control 81(7), 1125–1138 (2008)MATH CrossRef
    186.Armbrust, M.; Fox, A.; Griffith, R.; Joseph, A.D.; Katz, R.H.; Konwinski, A.; Lee, G.; Patterson, D.A.; Rabkin, A.; Stoica, I.; Zaharia, M.: Above the Clouds: A Berkeley View of Cloud Computing, Electrical Engineering and Computer Sciences University of California at Berkeley, Tech. Rep. UCB/EECS-2009-28, (2009)
    187.Xia, Y.Q.: From networked control systems to cloud control systems. In: Proceedings of the 31th Chinese Control Conference, pp. 5878–5883 (2012)
  • 作者单位:Magdi S. Mahmoud (1)

    1. Systems Engineering Department, KFUPM, P. O. 5067, Dhahran, 31261, Saudi Arabia
  • 刊物类别:Engineering
  • 刊物主题:Engineering, general
    Mathematics
    Science, general
  • 出版者:Springer Berlin / Heidelberg
文摘
This paper provides an overview of the research investigations into the evolving area of networked control system. Initial discussions were focused on exploring the impact of a common digital communication network in the feedback architecture. Results on addressing communication network artifacts, such as time delays, packet dropouts, and limited communication capability due to signal quantization are thoroughly examined. Several one-channel feedback NCS configurations were presented and analyzed with focus on nonstationary packet dropouts. State, observer-based and Output feedback control design methods over a shared digital communication network are treated. Recent developments pertaining to quantized control and estimation methods are reported. A concise account of event-based control and filtering schemes is presented. Finally, the concept of cloud control systems is discussed in this paper, which is an extension of networked control systems (NCS). With the development of Internet of Things (IOT), the technology of NCSs has played a key role in IOT. Cloud computing is developed rapidly, which provides a perfect platform for big data processing, controller design, and performance assessment. The research on cloud control systems will give new contribution to the control theory and applications in the near future. Some of the laboratory-scale applications are demonstrated.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700