Search results for "sign"

showing 10 items of 14733 documents

Adaptive control of uncertain nonlinear systems with quantized input signal

2018

Abstract This paper proposes new adaptive controllers for uncertain nonlinear systems in the presence of input quantization. The control signal is quantized by a class of sector-bounded quantizers including the uniform quantizer, the logarithmic quantizer and the hysteresis quantizer. To clearly illustrate our approaches, we will start with a class of single-loop nonlinear systems and then extend the results to multi-loop interconnected nonlinear systems. By using backstepping technique, a new adaptive control algorithm is developed by constructing a new compensation method for the effects of the input quantization. A hyperbolic tangent function is introduced in the controller with a new tr…

0209 industrial biotechnologyAdaptive controlComputer scienceQuantization (signal processing)02 engineering and technologyLipschitz continuityHyperbolic tangent functionTracking errorAdaptive ControlNonlinear system020901 industrial engineering & automationBacksteppingControl and Systems EngineeringControl theoryBackstepping:Electrical and electronic engineering [Engineering]0202 electrical engineering electronic engineering information engineeringControl signal020201 artificial intelligence & image processingElectrical and Electronic EngineeringAutomatica
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Decentralized Adaptive Control for Interconnected Nonlinear Systems with Input Quantization

2017

Abstract In this paper, a decentralized adaptive control scheme is proposed for a class of uncertain nonlinear interconnected systems with input quantization. A hysteresis uniform quantization is introduced to reduce chattering. In the control design, a smooth function is introduced with backstepping technique to compensate for the effects of interactions. It is shown that the proposed decentralized adaptive controllers can ensure global boundedness of all the signals in the closed-loop interconnected systems and the tracking errors of subsystem converge to a residual, which can be adjusted by choosing suitable design parameters. Simulation results illustrate the effectiveness of the propos…

0209 industrial biotechnologyAdaptive controlComputer scienceQuantization (signal processing)020208 electrical & electronic engineering02 engineering and technologyResidualNonlinear systemHysteresis020901 industrial engineering & automationComputer Science::Systems and ControlControl and Systems EngineeringControl theoryBackstepping0202 electrical engineering electronic engineering information engineeringIFAC-PapersOnLine
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Adaptive Backstepping Control of Nonlinear Uncertain Systems With Quantized States

2019

This paper investigates the stabilization problem for uncertain nonlinear systems with quantized states. All states in the system are quantized by a static bounded quantizer, including uniform quantizer, hysteresis-uniform quantizer, and logarithmic-uniform quantizer as examples. An adaptive backstepping-based control algorithm, which can handle discontinuity, resulted from the state quantization and a new approach to stability analysis are developed by constructing a new compensation scheme for the effects of the state quantization. Besides showing the global ultimate boundedness of the system, the stabilization error performance is also established and can be improved by appropriately adj…

0209 industrial biotechnologyAdaptive controlComputer scienceQuantization (signal processing)ComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISIONUncertain systemsData_CODINGANDINFORMATIONTHEORY02 engineering and technologyComputer Science ApplicationsNonlinear systemHysteresisQuantization (physics)VDP::Teknologi: 500020901 industrial engineering & automationControl and Systems EngineeringControl theoryBounded functionBacksteppingElectrical and Electronic Engineering
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Adaptive Control of Quantized Uncertain Nonlinear Systems

2017

Abstract This paper proposes a new adaptive controller for uncertain nonlinear systems in presence of quantized input signal and unknown external disturbance. A hysteresis quantizer is incorporated to reduce chattering phenomenon. By proposing a new transformation of the final control signal, using the sector-bound property of the quantizer and introducing a hyperbolic tangent function, the effects from input quantization and external disturbance are effectively compensated and the Lipschitz condition required for the nonlinear functions in the systems is removed. Besides showing global stability, tracking error performance is also established and can be adjusted by tuning certain design pa…

0209 industrial biotechnologyAdaptive controlQuantization (signal processing)02 engineering and technologyLipschitz continuitySignalTracking errorNonlinear system020901 industrial engineering & automationTransformation (function)Control and Systems EngineeringControl theory0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingMathematicsIFAC-PapersOnLine
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Tutorial on dynamic analysis of the Costas loop

2016

Abstract Costas loop is a classical phase-locked loop (PLL) based circuit for carrier recovery and signal demodulation. The PLL is an automatic control system that adjusts the phase of a local signal to match the phase of the input reference signal. This tutorial is devoted to the dynamic analysis of the Costas loop. In particular the acquisition process is analyzed. Acquisition is most conveniently described by a number of frequency and time parameters such as lock-in range, lock-in time, pull-in range, pull-in time, and hold-in range. While for the classical PLL equations all these parameters have been derived (many of them are approximations, some even crude approximations), this has not…

0209 industrial biotechnologyAutomatic controlComputer science020208 electrical & electronic engineering02 engineering and technologyFilter (signal processing)SignalLoop (topology)Phase-locked loop020901 industrial engineering & automationControl and Systems EngineeringControl theoryCostas loop0202 electrical engineering electronic engineering information engineeringDemodulationCarrier recoverySoftwareAnnual Reviews in Control
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Autonomous Bearing Fault Diagnosis Method based on Envelope Spectrum

2017

Abstract Rolling element bearings are one of the fundamental components of a machine, and their failure is the most frequent cause of machine breakdown. Monitoring the bearing condition is vital to preventing unexpected shutdowns and improving their maintenance planning. Specifically, the bearing vibration can be measured and analyzed to diagnose bearing faults. Accurate fault diagnosis can be achieved by analyzing the envelope spectrum of a narrowband filtered vibration signal. The optimal narrow-band is centered at the resonance frequency of the bearing. However, how to determine the optimal narrow-band is a challenge. Several methods aim to identify the optimal narrow-band, but they are …

0209 industrial biotechnologyBearing (mechanical)Computer science020208 electrical & electronic engineeringResonance02 engineering and technologyFault (power engineering)Signallaw.inventionVibration020901 industrial engineering & automationControl and Systems EngineeringlawControl theory0202 electrical engineering electronic engineering information engineeringFocus (optics)human activitiesEnvelope (motion)IFAC-PapersOnLine
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Intelligent virtual manufacturing cell formation in cloud-based design and manufacturing

2018

Abstract Cloud-based design and manufacturing (CBDM) can presumably stimulate greater intelligence in cloud-based models. This paper assumes that cloud-based design for cellular manufacturing can be referred to as a multiscale, uncertain, and dynamic service-oriented network where a set of CAD parts, modelled by set of features, can be manufactured in intelligent virtual manufacturing cells under certain constraints. Using the concepts of the holon and the attractor, integrating the uncertainty in the modelling of part design and part–manufacturing network, an approach to address intelligent virtual manufacturing cell formation in CBDM is proposed. The powerful role of the CAD features is e…

0209 industrial biotechnologyCloud-based design and manufacturingComputer scienceHolon (philosophy)business.industryCellular manufacturingDistributed computingCloud computing02 engineering and technologycomputer.software_genreFuzzy logic[SHS]Humanities and Social SciencesIntelligent agent020901 industrial engineering & automationArtificial IntelligenceControl and Systems Engineering0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingElectrical and Electronic EngineeringCloud manufacturingManufacturing cellbusinesscomputerComputingMilieux_MISCELLANEOUSEngineering Applications of Artificial Intelligence
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Cross-Layer MAC Protocol for Unbiased Average Consensus Under Random Interference

2019

Wireless Sensor Networks have been revealed as a powerful technology to solve many different problems through sensor nodes cooperation. One important cooperative process is the so-called average gossip algorithm, which constitutes a building block to perform many inference tasks in an efficient and distributed manner. From the theoretical designs proposed in most previous work, this algorithm requires instantaneous symmetric links in order to reach average consensus. However, in a realistic scenario wireless communications are subject to interferences and other environmental factors, which results in random instantaneous topologies that are, in general, asymmetric. Consequently, the estimat…

0209 industrial biotechnologyComputer Networks and CommunicationsComputer sciencebusiness.industryEstimator020206 networking & telecommunications02 engineering and technologyExpected valueNetwork topology020901 industrial engineering & automationMinimum-variance unbiased estimatorBias of an estimatorSignal Processing0202 electrical engineering electronic engineering information engineeringWirelessbusinessAlgorithmWireless sensor networkRandom variableInformation SystemsIEEE Transactions on Signal and Information Processing over Networks
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Haptic and Visual Feedback Assistance for Dual-Arm Robot Teleoperation in Surface Conditioning Tasks

2020

Contact driven tasks, such as surface conditioning operations (wiping, polishing, sanding, etc.), are difficult to program in advance to be performed autonomously by a robotic system, specially when the objects involved are moving. In many applications, human-robot physical interaction can be used for the teaching, specially in learning from demonstrations frameworks, but this solution is not always available. Robot teleoperation is very useful when user and robot cannot share the same workspace due to hazardous environments, inaccessible locations, or because of ergonomic issues. In this sense, this article introduces a novel dual-arm teleoperation architecture with haptic and visual feedb…

0209 industrial biotechnologyComputer science02 engineering and technologyWorkspaceVisual feedbackUser-Computer Interface020901 industrial engineering & automationFeedback SensoryHuman–computer interaction0502 economics and businessHumansHaptic technology050210 logistics & transportationRobot teleoperationbusiness.industry05 social sciencesUsabilityEquipment DesignRoboticsVisió artificial (Robòtica)Innovacions tecnològiquesComputer Science ApplicationsHuman-Computer InteractionTeleoperationTask analysisRobotErgonomicsbusinessIEEE Transactions on Haptics
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Prediction of Vehicle Crashworthiness Parameters Using Piecewise Lumped Parameters and Finite Element Models

2018

Estimating the vehicle crashworthiness parameters experimentally is expensive and time consuming. For these reasons different modelling approaches are utilized to predict the vehicle behaviour and reduce the need for full-scale crash testing. The earlier numerical methods used for vehicle crashworthiness analysis were based on the use of lumped parameters models (LPM), a combination of masses and nonlinear springs interconnected in various configurations. Nowadays, the explicit nonlinear finite element analysis (FEA) is probably the most widely recognized modelling technique. Although informative, finite element models (FEM) of vehicle crash are expensive both in terms of man-hours put into…

0209 industrial biotechnologyComputer science02 engineering and technologyfinite element analysislcsh:TechnologyIndustrial and Manufacturing EngineeringAcceleration020901 industrial engineering & automation0203 mechanical engineeringlcsh:TA174Range (statistics)acceleration severity indexEngineering (miscellaneous)automotive_engineeringMathematicsbusiness.industrylcsh:TMechanical EngineeringNumerical analysisStructural engineeringlcsh:Engineering designCrash testFinite element methodNonlinear system020303 mechanical engineering & transportsPiecewiseCrashworthinesspiecewise lumped parametersdynamic crushbusinessDesigns
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