Search results for "Sliding mode control"

showing 10 items of 22 documents

2014

State estimation problem is considered for a kind of wireless network control system with stochastic uncertainty and time delay. A sliding mode observer is designed for the system under the situation that no missing measurement occurs and system uncertainty happens in a stochastic way. The observer designed for the system can guarantee the system states will be driven onto the sliding surface under control law, and the sliding motion of system states on sliding surface will be stable. By constructing proper Lyapunov-Krasovskii functional, sufficient conditions are acquired via linear matrix inequality. Finally, simulation result is employed to show the effectiveness of the proposed method.

Observer (quantum physics)Control theoryWireless networkApplied MathematicsControl systemMode (statistics)Linear matrix inequalityState observerState (functional analysis)Sliding mode controlAnalysisMathematicsAbstract and Applied Analysis
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A sliding mode approach to H∞ non-fragile observer-based control design for uncertain Markovian neutral-type stochastic systems

2015

This paper is focused on designing an H ∞ sliding-mode control for a class of neutral-type stochastic systems with Markovian switching parameters and nonlinear uncertainties. An H ∞ non-fragile observer subjected to the transition rates of the switching mode is firstly constructed. By some specified matrices, the connections among the designed sliding surfaces corresponding to every mode are established. Then, the state-estimation-based sliding mode control law is designed to guarantee the reachability of the sliding surface in finite time interval. Furthermore, a stochastic stability criterion is established for all admissible uncertainties, which can guarantee the error system and sliding…

Observer (quantum physics)Mode (statistics)Markov processInterval (mathematics)Sliding mode controlNonlinear systemsymbols.namesakeControl and Systems EngineeringReachabilityControl theorysymbolsState observerElectrical and Electronic EngineeringMathematicsAutomatica
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Corrigendum to “Observer-Based Sliding Mode Control for Stabilization of a Dynamic System with Delayed Output Feedback”

2016

Output feedback0209 industrial biotechnologyComputer scienceGeneral Mathematicslcsh:MathematicsGeneral Engineering02 engineering and technologylcsh:QA1-939Sliding mode control020901 industrial engineering & automationControl theorylcsh:TA1-20400202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingObserver basedlcsh:Engineering (General). Civil engineering (General)Mathematical Problems in Engineering
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A sliding mode approach to robust stabilisation of Markovian jump linear time-delay systems with generally incomplete transition rates

2015

Abstract This paper is devoted to investigating the problem of robust sliding mode control for a class of uncertain Markovian jump linear time-delay systems with generally uncertain transition rates (GUTRs). In this GUTR model, each transition rate can be completely unknown or only its estimate value is known. By making use of linear matrix inequalities technique, sufficient conditions are presented to derive the linear switching surface and guarantee the stochastic stability of sliding mode dynamics. A sliding mode control law is developed to drive the state trajectory of the closed-loop system to the specified linear switching surface in a finite-time interval in spite of the existing unc…

Surface (mathematics)Control and Systems EngineeringControl theoryMode (statistics)TrajectoryInterval (mathematics)State (functional analysis)Transition rate matrixTime complexitySliding mode controlAnalysisComputer Science ApplicationsMathematicsNonlinear Analysis: Hybrid Systems
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H∞ sliding mode control for uncertain neutral-type stochastic systems with Markovian jumping parameters

2015

This paper is devoted to the investigation of H ∞ sliding mode control (SMC) for uncertain neutral stochastic systems with Markovian jumping parameters and time-varying delays. A sliding surface functional is firstly constructed. Then, the sliding mode control law is designed to guarantee the reachability of the sliding surface in a finite-time interval. The sufficient conditions for asymptotically stochastic stability of sliding mode dynamics with a given disturbance attenuation level are presented in terms of linear matrix inequalities (LMIs). Finally, an example is provided to illustrate the efficiency of the proposed method.

Surface (mathematics)Information Systems and ManagementAttenuationMode (statistics)Interval (mathematics)Type (model theory)Sliding mode controlComputer Science ApplicationsTheoretical Computer ScienceArtificial IntelligenceControl and Systems EngineeringReachabilityControl theorySoftwareMathematicsMarkovian jumpingInformation Sciences
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Robust H∞ sliding mode control with pole placement for a fluid power electrohydraulic actuator (EHA) system

2014

Published version of an article in the journal: International Journal of Advanced Manufacturing Technology. Also available from the publisher at: http://dx.doi.org/10.1007/s00170-014-5910-8 In this paper, we exploit the sliding mode control problem for a fluid power electrohydraulic actuator (EHA) system. To characterize the nonlinearity of the friction, the EHA system is modeled as a linear system with a system uncertainty. Practically, it is assumed that the system is also subject to the load disturbance and the external noise. An integral sliding mode controller is proposed to design. The advanced techniques such as the H ∞ control and the regional pole placement are employed to derive t…

Variable structure controlEngineeringbusiness.industrypole placementMechanical EngineeringLinear systemLinear matrix inequalitysliding mode controlComputer Science Applications1707 Computer Vision and Pattern RecognitionVDP::Technology: 500::Electrotechnical disciplines: 540Sliding mode controlLinear matrix inequalities (LMIs); Pole placement; Sliding mode control; Control and Systems Engineering; Software; Mechanical Engineering; Computer Science Applications1707 Computer Vision and Pattern Recognition; Industrial and Manufacturing EngineeringVDP::Mathematics and natural science: 400::Mathematics: 410::Analysis: 411Industrial and Manufacturing EngineeringComputer Science ApplicationsNonlinear systemFluid powerControl theoryControl and Systems EngineeringFull state feedbacklinear matrix inequalities (LMIs)ActuatorbusinessSoftwareH∞ control
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Fuzzy dynamic sliding mode control design for high order disturbed systems

2013

In this paper, the problem of fuzzy dynamic sliding mode control design is investigated for a class of disturbed systems. Specifically, the fuzzy controller is constructed based on one feedback signal to estimate the unknown nonlinear terms and to develop the sliding mode control according to the fuzzy rules. Furthermore, it possesses the characteristic of simplicity in design and effectiveness in attenuating chattering. Finally, a numerical example is included to demonstrate the effectiveness and advantage of the proposed method.

Variable structure controlNonlinear systemAdaptive neuro fuzzy inference systemControl theorySIGNAL (programming language)Fuzzy control systemFuzzy logicSliding mode controlMathematics2013 International Conference on Fuzzy Theory and Its Applications (iFUZZY)
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Non-fragile sliding mode control for flexible air-breathing hypersonic vehicles

2012

The non-fragile sliding mode tracking control design problem for a flexible air-breathing hypersonic vehicles (FAHVs) is investigated in this paper. A linearized model is constructed with respect to a trim point for the nonlinear, dynamically coupled simulation model of the FAHVs with external disturbance, then a reference model is designed and a tracking error model is proposed. An integral sliding surface is designed, and then the non-fragile H ∞ controller design problem for the sliding mode dynamics is discussed. sufficient condition is derived for the existence of such a controller in the presence of unmatched disturbance. A SMC law is derived to guarantee the reachability of the speci…

Vehicle dynamicsTracking errorHypersonic speedNonlinear systemEngineeringControl theoryRobustness (computer science)business.industryAerodynamicsbusinessReference modelSliding mode control2012 7th IEEE Conference on Industrial Electronics and Applications (ICIEA)
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Optimization of Delayed-State Kalman-Filter-based Algorithm via Differential Evolution for Sensorless Control of Induction Motors

2010

This paper proposes the employment of the differential evolution (DE) to offline optimize the covariance matrices of a new reduced delayed-state Kalman-filter (DSKF)-based algorithm which estimates the stator-flux linkage components, in the stationary reference frame, to realize sensorless control of induction motors (IMs). The DSKF-based algorithm uses the derivatives of the stator-flux components as mathematical model and the stator-voltage equations as observation model so that only a vector of four variables has to be offline optimized. Numerical results, carried out using a low-speed training test, show that the proposed DE-based approach is very promising and clearly outperforms a cla…

evolutionary algorithms (EAs)induction-motor (IM) drivesvelocity controlspeed sensorlessProportional controlcovariance matricesKalman filteralgorithmsSliding mode controlControl and Systems EngineeringRobustness (computer science)Control theoryAC motor drivesDifferential evolutionoptimization methodsstate estimationElectrical and Electronic EngineeringRobust controlparameter estimationAlgorithmStationary Reference FrameKalman filteringInduction motorMathematics
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Fuzzy sliding mode control design for a class of disturbed systems

2014

This paper discusses the problem of the fuzzy sliding mode control for a class of disturbed systems. First, a fuzzy auxiliary controller is constructed based on a feedback signal not only to estimate the unknown control term, but also participates in the sliding mode control due to the fuzzy rule employed. Then, we extend our theory into the cases, where some kind of system information can not be obtained, for better use of our theoretical results in real engineering. Finally, some typical numerical examples are included to demonstrate the effectiveness and advantage of the designed sliding mode controller. Refereed/Peer-reviewed

horizontal platform systemEngineeringFuzzy ruleComputer Networks and Communicationsbusiness.industryApplied MathematicsControl (management)SIGNAL (programming language)Mode (statistics)sliding mode controlControl engineeringFuzzy logicSliding mode controlTerm (time)Control and Systems EngineeringControl theorySignal ProcessingControl and Systems Engineering; Computer Networks and Communications; Applied Mathematics; Signal ProcessingbusinessJournal of the Franklin Institute
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