Exponential stability of nonlinear systems with event-triggered schemes and its application
Zhang Li; Gang Yu; Yanjun Shen
Kybernetika (2021)
- Issue: 1, page 174-192
- ISSN: 0023-5954
Access Full Article
topAbstract
topHow to cite
topLi, Zhang, Yu, Gang, and Shen, Yanjun. "Exponential stability of nonlinear systems with event-triggered schemes and its application." Kybernetika (2021): 174-192. <http://eudml.org/doc/297878>.
@article{Li2021,
abstract = {In this paper, we discuss exponential stability for nonlinear systems with sampled-data-based event-triggered schemes. First, a framework is proposed to analyze exponential stability for nonlinear systems under some different triggering conditions. Based on these results, output feedback exponential stabilization is investigated for a class of inherently nonlinear systems under a kind of event-triggered strategies. Finally, the rationality of the theoretical work is verified by numerical simulations.},
author = {Li, Zhang, Yu, Gang, Shen, Yanjun},
journal = {Kybernetika},
keywords = {sampled-data; event-triggered; exponential stability; output feedback; inherently nonlinear systems},
language = {eng},
number = {1},
pages = {174-192},
publisher = {Institute of Information Theory and Automation AS CR},
title = {Exponential stability of nonlinear systems with event-triggered schemes and its application},
url = {http://eudml.org/doc/297878},
year = {2021},
}
TY - JOUR
AU - Li, Zhang
AU - Yu, Gang
AU - Shen, Yanjun
TI - Exponential stability of nonlinear systems with event-triggered schemes and its application
JO - Kybernetika
PY - 2021
PB - Institute of Information Theory and Automation AS CR
IS - 1
SP - 174
EP - 192
AB - In this paper, we discuss exponential stability for nonlinear systems with sampled-data-based event-triggered schemes. First, a framework is proposed to analyze exponential stability for nonlinear systems under some different triggering conditions. Based on these results, output feedback exponential stabilization is investigated for a class of inherently nonlinear systems under a kind of event-triggered strategies. Finally, the rationality of the theoretical work is verified by numerical simulations.
LA - eng
KW - sampled-data; event-triggered; exponential stability; output feedback; inherently nonlinear systems
UR - http://eudml.org/doc/297878
ER -
References
top- Bacciotti, A., Rosier, L., Lyapunov Functions and Stability in Control Theory., Springer, Berlin - Heidelberg 2005. MR2146587
- Chen, W., Ren, W., , Automatica 65 (2016), 90-97. Zbl1328.93167MR3447697DOI
- Ding, L., Han, Q., Zhang, X., , IEEE Trans. Industr. Inform. 15 (2019), 7, 3910-3922. DOI
- Du, H., Li, S., Qian, C., He, Y., Global stabilization of a class of inherently nonlinear systems under sampled-data control., Acta Automat. Sinica 40 (2014), 2, 379-384. MR3242367
- Du, H., Qian, C., Li, S., Chu, Z., , Automatica 99 (2019), 403-411. MR3880631DOI
- Fridman, E., Seuret, A., Richard, J. P., , Automatica 40 (2004), 8, 1441-1446. MR2153059DOI
- Gu, Z., Zhao, H., Yue, D., Yang, F., , Inform. Sci. 457-458 (2018), 99-112. MR3807030DOI
- Heemels, W. P. M. H., Donkers, M. C. F., Andrew, R. T., , IEEE Trans. Automat. Control 58 (2013), 4, 847-861. MR3038789DOI
- Hu, S., Yue, D., Xie, X., Ma, Y., Yin, X., , IEEE Trans. Neural Networks Learning Systems 29 (2018), 3, 573-585. MR3774113DOI
- Jiang, Y., Zhai, J., , Int. J. Robust Nonlinear Control 30 (2020), 302-320. MR4049012DOI
- Kawski, M., Homogeneous stabilizing feedback laws., Control Theory Advanced Technol. 6 (1990), 4, 497-516. MR1092775
- Li, S., Guo, J., Xiang, Z., 10.1109/TSMC.2018.2836930, IEEE Trans. Systems Man Cybernet.: Systems 49 (2019), 9, 1912-1919. DOI10.1109/TSMC.2018.2836930
- Li, X., Wu, J., , IEEE Trans. Automat. Control 63 (2018), 1, 306-311. MR3744852DOI
- Li, Z., Zhao, J., , Int. J. Robust Nonlinear Control 28 (2018), 7, 2853-2867. MR3779426DOI
- Li, L., Zou, W., Fei, S., 10.1016/j.jfranklin.2017.02.021, J. Franklin Inst. 354 (2017), 11, 4331-4352. MR3655772DOI10.1016/j.jfranklin.2017.02.021
- Peng, C., Han, Q. L., Yue, D., , IEEE Trans. Fuzzy Systems 21 (2013), 1, 164-170. DOI
- Peng, C., Yang, T. C., , Automatica 49 (2013), 5, 1326-1332. MR3044010DOI
- Polendo, J., Qian, C., 10.1002/rnc.1139, Int. J. Robust Nonlinear Control 17 (2010), 7, 605-629. MR2314806DOI10.1002/rnc.1139
- Qian, C., Du, H., Li, S., , IEEE Trans. Automat. Control 61 (2016), 4088-4093. MR3582522DOI
- Qian, C., Lin, W., Non-smooth stabilizers for nonlinear systems with uncontrollable unstable linearization., In: Proc. 39th IEEE Conference on Decision and Control (Cat. No.00CH37187), Sydney, NSW, 2 (2000), pp. 1655-1660. MR2007048
- Qian, C., Lin, W., , IEEE Trans. Automat. Control 46 (2001), 7, 1061-1079. Zbl1012.93053MR1842139DOI
- Qian, C., Lin, W., 10.1109/TAC.2006.880955, IEEE Trans. Automat. Control 51 (2006), 9, 1457-1471. MR2259799DOI10.1109/TAC.2006.880955
- Rosier, L., , Systems Control Lett. 19 (1992), 6, 467-473. Zbl0762.34032MR1195304DOI
- Shen, Y., Li, F., Zhang, D., Wang, Y. W., Liu, Y., , Int. J. Robust Nonlinear Control 29 (2019), 1, 166-179. MR3886115DOI
- Seyboth, G. S., Dimarogonas, D. V., Johansson, K. H., , Automatica 49 (2013), 1, 245-252. Zbl1257.93066MR2999968DOI
- Su, Z., Qian, C., Hao, Y., Zhao, M., , Automatica 92 (2018), 254-258. MR3784300DOI
- Zhai, J., Qian, C., 10.1002/rnc.1765, Int. J. Robust Nonlinear Control 22 (2012), 14, 1543-1561. MR2970951DOI10.1002/rnc.1765
- Zhang, J., Feng, G., , Automatica 50 (2014), 7, 1852-1859. MR3230886DOI
- Zhang, X. M., Han, Q. L., , Automatica 51 (2015), 55-69. MR3284753DOI
- Zhang, X., Han, Q., Ge, X., Ding, L., , IEEE Trans. Cybernet. 50 (2020), 8, 3616-3626. MR4144008DOI
- Zhang, X., Han, Q., Ge, X., Ding, D., Ding, L., Yue, D., Peng, C., , IEEE/CAA J. Automat. Sinica 7 (2020), 1, 1-17. MR4058068DOI
- Zhang, D., Han, Q., Zhang, X., , IEEE Trans. Cybernet. 50 (2020), 6, 2462-2474. DOI
- Zhang, D., Shen, Y., , IEEE Trans. Automat. Control 62 (2017), 11, 5822-5829. MR3730959DOI
- Yue, D., Tian, E., Han, Q., , IEEE Trans. Automat. Control 58 (2013), 2, 475-481. MR3023940DOI
NotesEmbed ?
topTo embed these notes on your page include the following JavaScript code on your page where you want the notes to appear.