Výsledky vyhľadávania - "dynamic output feedback controller"
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1
Autori: a ďalší
Prispievatelia: a ďalší
Zdroj: International Journal of Robust and Nonlinear Control. 31:8295-8328
Predmety: Static output feedback controller, 0209 industrial biotechnology, input saturation, Dynamic output feedback controller, Input saturationlinear matrix inequalities, Nonlinear parameter varying descriptor models, 02 engineering and technology, Feedback control, robust controllers, uncertainties, Uncertainties, nonlinear parameter varying descriptor models, Robust controllers, [SPI.AUTO] Engineering Sciences [physics]/Automatic, static output feedback controller, 0202 electrical engineering, electronic engineering, information engineering, Sensitivity (robustness), Nonlinear systems in control theory, linear matrix inequalities, dynamic output feedback controller
Popis súboru: application/xml; application/pdf
Prístupová URL adresa: https://zbmath.org/7772088
https://doi.org/10.1002/rnc.5415
https://hal.archives-ouvertes.fr/hal-03161582
https://onlinelibrary.wiley.com/doi/10.1002/rnc.5415
https://hal-univ-evry.archives-ouvertes.fr/hal-03161582
https://hal.science/hal-03161582v1
https://doi.org/10.1002/rnc.5415
https://hal.science/hal-03161582v1/document -
2
Autori: a ďalší
Zdroj: IEEE Systems Journal. 16(1):1021-1031
Predmety: Bilinear matrix inequality (BMI), dynamic output feedback control (DOFC), false data injection attack (FDIA), Frequency control, frequency regulation, Iron, Linear matrix inequalities, Load modeling, Microgrids, Observers, Renewable energy sources, Closed loop systems, Convex optimization, Electric control equipment, Electric load management, Feedback control, Robustness (control systems), Solar energy, System stability, Wind power, Bilinear matrix inequality, Convex optimization problems, Dynamic output feedback controller, False data injection attacks, Load frequency controllers, Load-frequency control, Quadratic matrix inequalities, Renewable energy source, Electric frequency control
Popis súboru: print
Prístupová URL adresa: https://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-306089
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3
Autori:
Zdroj: Engineering, Technology & Applied Science Research, Vol 13, Iss 5 (2023)
Predmety: 2-D discrete system, robust stability, asymptotic stability control, static output feedback controller, dynamic output feedback controller, observer based output feedback controller, Engineering (General). Civil engineering (General), TA1-2040, Technology (General), T1-995, Information technology, T58.5-58.64
Relation: http://www.etasr.com/index.php/ETASR/article/view/6056; https://doaj.org/toc/2241-4487; https://doaj.org/toc/1792-8036; https://doaj.org/article/5958c3a8d0964b52aa088c3fb983dc98
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4
Autori: a ďalší
Predmety: keyword:stability, keyword:stabilization, keyword:free-matrix-based integral inequality, keyword:linear matrix inequality, keyword:$H_{\infty }$ dynamic output feedback controller, msc:93B52, msc:93Dxx
Popis súboru: application/pdf
Relation: reference:[1] Alaoui, S. B., Tissir, E. H., Chaibi, N., Haoussi, F. El: Regional stabilization and $h_\infty$ congestion control with input saturation.Trans. Institute of Measurement and Control 43 (2021), 10, 2196-2212.; reference:[2] Briat, C.: Convergence and equivalence results for the Jensen's inequality application to time-delay and sampled-data systems.IEEE Trans. Automat. Control 56 (2011), 7, 1660-1665. MR 2848277; reference:[3] Briat, C.: Linear parameter-varying and time-delay systems.Anal. Observ. Filter. Control 3 (2014), 5-7. MR 3308420; reference:[4] Chaibi, N., Tissir, E. H., Alaoui, S. B., Charqi, M., Idrissi, S.: H-infinity control of singular takagi-sugeno fuzzy systems with additive time-varying delays.; reference:[5] Chaibi, N., Alaoui, S. B., Tissir, E. H.: Regional stabilization of tcp/aqm system with polytopic uncertainties and homogeneous segmented time delay.J. Franklin Inst. 357 (2020), 12, 8277-8297. MR 4129080; reference:[6] Chang, X. H., Zhang, L., Park, Ju. H.: Robust static output feedback $H_\infty$ control for uncertain fuzzy systems.Fuzzy Sets Syst. 273 (2015), 87-104. MR 3347272; reference:[7] Deepak, V. D., Arun, N. K., Shihabudheen, K. V.: Observer based stabilization of linear time delay systems using new augmented lkf.IFAC J. Systems Control 26 (2023), 100231. MR 4653299; reference:[8] Ding, S., Levant, A., Li, S.: Simple homogeneous sliding-mode controller.Automatica 67 (2016), 22-32. MR 3471745; reference:[9] El-Jimi, D., Chaibi, N., Boumhidi, I., Charqi, M.: Admissibility and stabilization of descriptor t-s fuzzy systems with two additive time-varying delays.Int. J. Dynamics Control 11 (2023), 5, 2438-2451. MR 4631521; reference:[10] El-Jimi, D., Chaibi, N., Boumhidi, I., Charqi, M.: Robust admissibility of uncertain t-s fuzzy singular systems with time-varying delay: An input-output approach.J. Control, Automat. Electr. Systems 34 (2023), 5, 951-962.; reference:[11] Khaloufi, G. El, Chaibi, N., Alaoui, S. B., Boumhidi, I.: Generalized dissipativity dynamic output feedback control for coronary artery system.Trans. Institute of Measurement and Control 46 (2024), 4, 716-728.; reference:[12] Kharitonov, V. L., Zhabko, A. P.: Lyapunov-Krasovskii approach to the robust stability analysis of time-delay systems.Automatica 39 (2003), 1, 15-20. MR 2136548; reference:[13] Kwon, N. K., Park, I. S., Park, P. G., Park, Ch.: Dynamic output-feedback control for singular markovian jump system: Lmi approach.IEEE Trans. Automat. Control 62 (2017), 10, 5396-5400. MR 3708917; reference:[14] Lee, T. H., Park, Ju. H., Xu, S.: Relaxed conditions for stability of time-varying delay systems.Automatica 75 (2017), 11-15. MR 3582147; reference:[15] Lee, W. I., Lee, S. Y., Park, P. G.: Affine bessel-legendre inequality: Application to stability analysis for systems with time-varying delays.Automatica 93 (2018), 535-539. MR 3810943; reference:[16] Liu, K., Seuret, A., Xia, Y.: Stability analysis of systems with time-varying delays via the second-order Bessel-Legendre inequality.Automatica 76 (2017), 138-142. MR 3590563; reference:[17] Park, P. G., Ko, J. W., Jeong, Ch.: Reciprocally convex approach to stability of systems with time-varying delays.Automatica 47 (2011), 1, 235-238. MR 2878269, 10.1016/j.automatica.2010.10.014; reference:[18] Sadek, B. A., Houssaine, T. E., Noreddine, Ch.: On designing Lyapunov-Krasovskii functional for time-varying delay t-s fuzzy systems.J. Franklin Inst. 359 (2022), 5, 2192-2205. MR 4393309, 10.1016/j.jfranklin.2022.01.015; reference:[19] Seuret, A., Gouaisbaut, F.: Wirtinger-based integral inequality: Application to time-delay systems.Automatica 49 (2013), 9, 2860-2866. MR 3084475; reference:[20] Seuret, A., Gouaisbaut, F.: Complete quadratic lyapunov functionals using bessel-legendre inequality.In: 2014 European Control Conference (ECC), IEEE, pp. 448-453.; reference:[21] Seuret, A., Gouaisbaut, F.: Hierarchy of LMI conditions for the stability analysis of time-delay systems.Systems Control Lett. 81 (2015), 1-7. MR 3353689; reference:[22] Seuret, A., Gouaisbaut, F.: Stability of linear systems with time-varying delays using bessel-legendre inequalities.IEEE Trans. Automat. Control 63 (2018), 1, 225-232. MR 3744841; reference:[23] Shen, H., Li, F., Wu, Z.-Guang., Park, Ju. H., Sreeram, V.: Fuzzy-model-based nonfragile control for nonlinear singularly perturbed systems with semi-Markov jump parameters.IEEE Trans. Fuzzy Systems 26 (2018), 6, 3428-3439.; reference:[24] Song, J., Niu, Y., Lam, J., Shu, Z.: A hybrid design approach for output feedback exponential stabilization of markovian jump systems.IEEE Trans. Automat. Control 63 (2018), 5, 1404-1417. MR 3800534; reference:[25] Sun, W., Su, S.-F., Wu, Y., Xia, J.: Novel adaptive fuzzy control for output constrained stochastic nonstrict feedback nonlinear systems.IEEE Trans. Fuzzy Systems 29 (2020), 5, 1188-1197.; reference:[26] Venkatesh, M., Patra, S., Ray, G.: Observer-based controller design for linear time-varying delay systems using a new Lyapunov-Krasovskii functional.Int. J. Automat. Control 15 (2021), 1, 99-123.; reference:[27] Wu, B., Chang, X.-H., Zhao, X.: Fuzzy $h_\infty$ output feedback control for nonlinear ncss with quantization and stochastic communication protocol.IEEE Trans. Fuzzy Systems 29 (2020), 9, 2623-2634.; reference:[28] Wu, M., He, Y., She, J.-H., Liu, G.-P.: Delay-dependent criteria for robust stability of time-varying delay systems.Automatica 40 (2004), 8, 1435-1439. MR 2153058; reference:[29] Xu, S., Lam, J.: A survey of linear matrix inequality techniques in stability analysis of delay systems.Int. J. Systems Sci. 39 (2008), 12, 1095-1113. MR 2468715; reference:[30] Zeng, H.-B., Teo, K. L., He, Y.: A new looped-functional for stability analysis of sampled-data systems.Automatica 82 (2017), 328-331. MR 3658773; reference:[31] Zeng, H.-B., Liu, X.-G., Wang, W.: A generalized free-matrix-based integral inequality for stability analysis of time-varying delay systems.Appl. Math. Comput. 354 (2019), 1-8. MR 3916004; reference:[32] Zeng, H.-B., Liu, X.-G., Wang, W., Xiao, S.-P.: New results on stability analysis of systems with time-varying delays using a generalized free-matrix-based inequality.J. Franklin Inst. 356 (2019), 13, 7312-7321. MR 3991513; reference:[33] Zhang, Ch. K., He, Y., Jiang, L., Wu, M., Wang, Q. G.: An extended reciprocally convex matrix inequality for stability analysis of systems with time-varying delay.Automatica 85 (2017), 481-485. MR 3712893; reference:[34] Zhang, J., Xia, Y., Shi, P., Mahmoud, M. S.: New results on stability and stabilisation of systems with interval time-varying delay.IET Control Theory Appl. 3 (2011), 429-436. MR 2857652
Dostupnosť: http://hdl.handle.net/10338.dmlcz/152988
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5
Autori:
Zdroj: IEEE Access, Vol 8, Pp 220723-220733 (2020)
Predmety: Lyapunov-Krasovskii functional, adaptive event-triggered mechanism, networked control systems, actuator saturation, dynamic output feedback controller, Electrical engineering. Electronics. Nuclear engineering, TK1-9971
Popis súboru: electronic resource
Prístupová URL adresa: https://doaj.org/article/64c81f23489a42d4a1a69162f5dbc507
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6
Autori:
Zdroj: Energies, Vol 14, Iss 5892, p 5892 (2021)
Predmety: dynamic output feedback controller (DOFC), exponentially mean-square stable (EMS), inter-area low-frequency oscillations, wide-area damping controller (WADC), packet loss of wide-area signals, Technology
Relation: https://www.mdpi.com/1996-1073/14/18/5892; https://doaj.org/toc/1996-1073; https://doaj.org/article/5ff44309fa414fc7a7bd4d1d41dbfb1a
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7
Autori: a ďalší
Zdroj: INTERNATIONAL JOURNAL OF INNOVATIVE COMPUTING INFORMATION AND CONTROL. 13(4):1351-1368
Predmety: Hypersonic gliding vehicle, ta214, ta213, Parallel distributed compensation (PDC), Dynamic output feedback controller, Linear matrix inequality (LMI), T-S fuzzy model, H performance
Prístupová URL adresa: http://juuli.fi/Record/0281330717
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8
Autori:
Zdroj: Open Access archive
Predmety: Dynamic output feedback controller, Negative-imaginary systems, Orbit control, Positive feedback control, Robust control, Satellite orbital system
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9
Autori: a ďalší
Prispievatelia: a ďalší
Zdroj: Asian Journal of Control. 18:1641-1654
Predmety: 'control input saturation', 'anti-windup compensator', [SPI.AUTO] Engineering Sciences [physics]/Automatic, state constraints', 'Takagi-Sugeno fuzzy systems', 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 16. Peace & justice, 'domain of attraction', 'dynamic output feedback controller'
Popis súboru: application/pdf
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10
Autori: a ďalší
Prispievatelia: a ďalší
Zdroj: Engineering Applications of Artificial Intelligence. 40:76-83
Predmety: 'Takagi-Sugeno fuzzy model', 'anti-windup compensator', [SPI.AUTO] Engineering Sciences [physics]/Automatic, 'Nonlinear systems', 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology, 'domain of attraction', 'dynamic output feedback controller', 6. Clean water, 'ℒ2 performance'
Popis súboru: application/pdf
Prístupová URL adresa: https://dblp.uni-trier.de/db/journals/eaai/eaai40.html#NguyenDD15
https://www.sciencedirect.com/science/article/pii/S0952197615000068
https://www.sciencedirect.com/science/article/abs/pii/S0952197615000068#!
https://www.infona.pl/resource/bwmeta1.element.elsevier-6e5a5355-10bf-328d-9655-0874112d14e0
https://dl.acm.org/doi/10.1016/j.engappai.2015.01.005
http://www.sciencedirect.com/science/article/pii/S0952197615000068 -
11
Autori: a ďalší
Prispievatelia: a ďalší
Zdroj: Journal of the Franklin Institute. 351:4124-4141
Predmety: 0209 industrial biotechnology, Bernoulli distribution, \(H^\infty\)-control, full-order dynamic output-feedback controller, 02 engineering and technology, \(H_\infty\) output-feedback control, 3. Good health, Discrete-time control/observation systems, Linear systems in control theory, discrete-time systems, 0202 electrical engineering, electronic engineering, information engineering, Semidefinite programming, Stochastic systems in control theory (general), nonlinearities, randomly occurring distributed delays
Popis súboru: application/xml
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12
Autori: a ďalší
Prispievatelia: a ďalší
Zdroj: IEEE Transactions on Automatic Control. 59:199-204
Predmety: 0209 industrial biotechnology, 0102 Applied Mathematics, College of Science and Engineering, Markovian jump system, 0202 electrical engineering, electronic engineering, information engineering, Markovian switching, Markovian jump linear systems, 02 engineering and technology, nonlinear function, diagonally dominant matrix, Lyapunov function approach, repeated scalar nonlinearity, dynamic output feedback controller
Prístupová URL adresa: https://hdl.handle.net/11541.2/120233
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13
Autori:
Zdroj: IEEE Transactions on Automatic Control. 37:1253-1256
Predmety: 0209 industrial biotechnology, Linear systems in control theory, time-varying norm-bounded parameter uncertainty, Stabilization of systems by feedback, 02 engineering and technology, linear dynamic output feedback controller, exogenous disturbance
Popis súboru: application/xml
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14
Autori: a ďalší
Prispievatelia: a ďalší
Predmety: Norm-Bounded Uncertainty, 0209 industrial biotechnology, Closed Loops, Illustrative Examples, Robust H, Discrete Time System, Delay-Dependent, Linear Discrete-Time Systems, 02 engineering and technology, Dynamic Output Feedback, Controller Designs, Time-Varying Delay, Sufficient Conditions, Output Feedback Controls, Dynamic Output Feedback Controller, Switched Lyapunov Function
Popis súboru: application/pdf
Prístupová URL adresa: https://hdl.handle.net/11376/2319
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15
Autori:
Zdroj: Computers & Electrical Engineering. 7:205-210
Predmety: Linear systems in control theory, 0202 electrical engineering, electronic engineering, information engineering, Stabilization of systems by feedback, Multivariable systems, multidimensional control systems, 02 engineering and technology, Synthesis problems, Model systems in control theory, dynamic output feedback controller
Popis súboru: application/xml
Prístupová URL adresa: https://www.sciencedirect.com/science/article/pii/0045790680900087
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16
Autori:
Zdroj: IEEE Transactions on Automatic Control. 34:277-286
Predmety: 0209 industrial biotechnology, Linear systems in control theory, disturbance decoupling problem, internal stability, 0202 electrical engineering, electronic engineering, information engineering, Geometric methods, Stabilization of systems by feedback, 02 engineering and technology, dynamic output feedback controller
Popis súboru: application/xml
Prístupová URL adresa: https://research.rug.nl/en/publications/4e64dbee-27a3-4362-93d0-ee93ac65c691
https://hdl.handle.net/11370/4e64dbee-27a3-4362-93d0-ee93ac65c691
https://ieeexplore.ieee.org/document/16417/
https://research.rug.nl/en/publications/almost-disturbance-decoupling-with-internal-stability
http://ieeexplore.ieee.org/document/16417/
https://core.ac.uk/display/92497014 -
17
Autori:
Prispievatelia:
Predmety: Controle (Teoria de sistemas e controle), Sistemas dinâmicos, Modelos não lineares, State-feedback controller, Quasi-LPV, LPV modeling, LMI, H2 norm, H infinite norm, Gain-scheduled, Dynamic output-feedback controller, Static output-feedback controller
Popis súboru: application/pdf
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18
Autori: a ďalší
Prispievatelia: a ďalší
Predmety: asymptotic stability, dynamic output-feedback controller, LMI, receding horizon H-infinity control, MODEL-PREDICTIVE CONTROL, TIME-VARYING SYSTEMS, TRACKING CONTROL, LINEAR-SYSTEMS, LPV SYSTEMS, STABILITY, CONSTRAINTS, MATRIX, SET
Relation: INTERNATIONAL JOURNAL OF CONTROL AUTOMATION AND SYSTEMS; 475; 484; SCI급, SCOPUS 등재논문; SCIE; Automation & Control Systems; https://oasis.postech.ac.kr/handle/2014.oak/24836; 5062; 000226162500006
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19
Autori:
Predmety: Hamilton-Jacobi inequalities, state feedback controller, Lyapunov stability, \(H^\infty\)-control, Nonlinear systems in control theory, prescribed level of disturbance attenuation, Decentralized systems, robust decentralized \(H_\infty\) control, smooth uncertain nonlinear interconnected system, dynamic output feedback controller
Popis súboru: application/xml
Prístupová URL adresa: https://zbmath.org/1578364
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20
Autori:
Zdroj: IEEE Transactions on Automatic Control. 30:828-829
Predmety: 0209 industrial biotechnology, Linear systems in control theory, observer, Multivariable systems, multidimensional control systems, 02 engineering and technology, dominant controller, Model systems in control theory, dynamic output feedback controller
Popis súboru: application/xml
Prístupová URL adresa: https://experts.illinois.edu/en/publications/existence-of-dominant-solutions-in-linear-
output -feedback
https://experts.illinois.edu/en/publications/existence-of-dominant-solutions-in-linear-output -feedback -2
http://yadda.icm.edu.pl/yadda/element/bwmeta1.element.ieee-000004048148
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