Search results for "Control theory"

showing 10 items of 1333 documents

Data-driven design of robust fault detection system for wind turbines

2014

Abstract In this paper, a robust data-driven fault detection approach is proposed with application to a wind turbine benchmark. The main challenges of the wind turbine fault detection lie in its nonlinearity, unknown disturbances as well as significant measurement noise. To overcome these difficulties, a data-driven fault detection scheme is proposed with robust residual generators directly constructed from available process data. A performance index and an optimization criterion are proposed to achieve the robustness of the residual signals related to the disturbances. For the residual evaluation, a proper evaluation approach as well as a suitable decision logic is given to make a correct …

EngineeringWind powerbusiness.industryMechanical EngineeringControl engineeringComputer Science Applications1707 Computer Vision and Pattern RecognitionResidualData-drivenTurbineFault detection and isolationComputer Science ApplicationsData-drivenNonlinear systemOptimization criterionPerformance indexControl and Systems EngineeringRobustness (computer science)Control theoryElectrical and Electronic EngineeringbusinessDecision tableRobustnessFault detectionWind turbineData-driven; Fault detection; Optimization criterion; Performance index; Robustness; Wind turbine; Mechanical Engineering; Computer Science Applications1707 Computer Vision and Pattern Recognition; Electrical and Electronic Engineering
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A Model-Based Control Strategy for Wind Turbines with Asynchronous Generator

2007

In this paper a model based control methodology is described with reference to a wind turbine for production of alternative energy. The mathematical model of a 600 kW wind turbine is taken into account assuming a well defined profile of the rotor blades. A set of reference angular speeds of the asynchronous generator and a set of reference pitch angles of the blade wind turbine are obtained in order to maximize the extracted wind power and to reach equilibrium conditions between the wind-generated torque and the electric torque of the generator. Finally a PID model based controller is designed and then tested by means of simulation experiments.

EngineeringWind powerbusiness.industryRotor (electric)Induction generatorPID controllerTurbinelaw.inventionPhysics::Fluid DynamicsElectricity generationSettore ING-INF/04 - AutomaticaControl theorylawWind power generation Asynchronous rotating machines Gain scheduling control PID control.Physics::Space PhysicsTorquebusinessPhysics::Atmospheric and Oceanic PhysicsGenerator (mathematics)2007 International Conference on Clean Electrical Power
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Wind Turbine Generation System With Optimized DC-Link Design and Control

2013

This paper presents an optimized capacitance design for the dc link of a back-to-back converter for wind turbine power generation. The design method combines switching ripple and dynamic specifications to give the smallest possible dc-link capacitance and the required proportional-integral compensator for the voltage regulation. Furthermore, a novel concept to globally manage the on/off switching of back-to-back power subconverters, based on a finite-state machine, is presented. The proposed management system keeps control of the dc-link voltage for proper operation of both subconverters regardless of wind or grid conditions.

EngineeringWind powerbusiness.industryTurbineCapacitancePower (physics)Power optimizerElectricity generationControl and Systems EngineeringControl theoryVoltage regulationElectrical and Electronic EngineeringbusinessPower controlIEEE Transactions on Industrial Electronics
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Microprocessor-Based Suboptimal Control of Converter-Fed Hypo-Hypersynchronous Cascade Drives

1983

Abstract This work consists of a theoretic and experimental study of a possible practical realization of a microprocessor-based control system using a converter-fed hypo-hypersynchronous cascade drive. Firstly, the design of a microprocessor-based controller is carried out considering an approximate mathematical model, linear-type, of the drive in question, by using optimal control techniques. Several ρhysical constraints, such as input variables con straints, state variables constraints and processing time of microprocessor are taken into account. The approach followed allows us to obtain a suboptimal closed-looρ control system. In addition, in order to carry out a more accurate study of t…

EngineeringWork (thermodynamics)State variablebusiness.industryControl engineeringOptimal controllaw.inventionMicroprocessorlawCascadeControl theoryControl systembusinessRealization (systems)IFAC Proceedings Volumes
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Design of Bilateral Switched Reluctance Linear Generator to Convert Wave Energy: Case Study in Sicily

2013

The aim of this work is a case study of the adaptation bilateral switched reluctance linear generator to the exploitation of energy of the sea. This type of generator can be used to convert wave energy in electrical energy. In this paper we present an analytical sizing and FEM simulation. As for the results, analysis of the data extracted through the simulations it was possible to calculate the emf. The emf was calculated in two cases of motion of the slider: first hypothesis has set the constant speed while the second is a variable speed according to the law of an oscillatory motion of the sea.

EngineeringWork (thermodynamics)business.industryElectric potential energyGeneral EngineeringSwitched reluctance motorFinite element methodGenerator (circuit theory)Control theoryLinear congruential generatorSliderElectronic engineeringbusinessEnergy (signal processing)Advanced Materials Research
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A fuzzy-logic-based controller for methane production in anaerobic fixed-film reactors

2017

The main objective of this work was to develop a controller for biogas production in continuous anaerobic fixed-bed reactors, which used effluent total volatile fatty acids (VFA) concentration as control input in order to prevent process acidification at closed loop. To this aim, a fuzzy-logic-based control system was developed, tuned and validated in an anaerobic fixed-bed reactor at pilot scale that treated industrial winery wastewater. The proposed controller varied the flow rate of wastewater entering the system as a function of the gaseous outflow rate of methane and VFA concentration. Simulation results show that the proposed controller is capable to achieve great process stability ev…

Engineering[SDV]Life Sciences [q-bio]Winepilot plant scale02 engineering and technologyWastewater010501 environmental sciencesbioenergyWaste Disposal Fluid7. Clean energy01 natural sciencesMethanechemistry.chemical_compoundBioreactorsanaerobic fixed-bed reactorméthaneProcess engineeringWaste Management and DisposalWater Science and TechnologyGeneral Medicinewinery wastewaterbiogaz6. Clean watercontrôle de bioprocédépilot scaleWastewateréchelle piloteMethaneAnaerobic exerciseIndustrial Wastebioréacteur à lit fixeIndustrial wasteFuzzy Logic020401 chemical engineeringControl theoryBioreactorEnvironmental Chemistry0204 chemical engineeringEffluent0105 earth and related environmental sciencesbioénergielogique flouebusiness.industryanaerobic fixed-bed reactor;fuzzy-logic control;methane;pilot scale;winery wastewaterFatty Acids Volatilevinassefuzzy setsfuzzy-logic controlchemistryControl systemmarsh gasbusiness
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Vibration signature analysis for rotor broken bar diagnosis in double cage induction motor drives

2013

The paper investigates the diagnosis of rotor broken bars in field oriented controlled (FOC) double cage induction motor drives, using current and vibration signature analysis techniques. The Impact of the closed loop control system cannot be neglected when the detection of asymmetries in the machine are based on the signature analysis of electrical variables. The proposed diagnosis approach is based on optimized use of wavelet analysis by a pre-processing of phase current or axial/radial vibration signals. Thus, the time evolution of the tracked rotor fault components can be effectively analyzed. This paper shows also the relevance of the fault components computed from axial vibration sign…

Engineeringadial vibration signalBar (music)machine vector controlinduction motor driverotor broken bar diagnosiSettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettriciphase current signalFault (power engineering)VibrationWound rotor motorlaw.inventionINDUCTION MOTORSRotorlawControl theoryclosed loop control systemdouble cage rotortime evolutionInduction motorpreprocessingwavelet transformvibration signature analysielectric currentaxial vibration signalVector controlfield oriented controlfault diagnosticrotor faultRotor (electric)business.industrySquirrel-cage rotorclosed loop systemfault diagnosiStatorAC Machinecurrent signature analysiBarVibrationCONDITION MONITORINGTime-Frequency Analysidouble cage induction motor driveignal processingmaintenance engineeringwavelet analysibusinessInduction motor4th International Conference on Power Engineering, Energy and Electrical Drives
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PEM Fuel Cell System Model Predictive Control and real-time operation on a power emulator

2010

Fuel Cell Systems (FCS) seem to be among the most reliable devices to produce clean energy, although they still suffer for many problems, mostly related to the fragility of the Polymer Electrolyte Membrane (PEM). Particularly, this paper focuses on the oxygen starvation, that leads both a decrease of the FCS performance and a shortening in the FCS lifetime. The purpose is to use the Model Predictive Control (MPC) and its capacity of accounting for linear constraints for managing the air system without risking to damage the fuel cell. Two control inputs and no static feed-forward actions have been used. Results show that the MPC is able to avoid the oxygen starvation, even with a sudden incr…

Engineeringair managementmodel predictive controlbusiness.industryProton exchange membrane fuel cellConvertersfuel cell systemsSystem modelPower (physics)Model predictive controlFragilityControl theoryFuel cellslipids (amino acids peptides and proteins)businessOxygen starvation2010 IEEE Energy Conversion Congress and Exposition
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Time optimal control of a satellite with two rotors

2001

International audience; The aim of this work is to investigate the structure of time-optimal trajectories for a control system modelizing a satellite with two rotors attached along its two fixed axes. Our results extend to the general case those obtained by Sussmann and Tang in an unpublished paper where they treat a particular case described below. We end up finding a sufficient family of four parameters trajectory types. The main tools used are the Pontryagin Maximum Principle, switching functions and envelope theory. © 2001 EUCA.

Engineeringbusiness.industry010102 general mathematicsWork (physics)Control (management)Structure (category theory)[MATH] Mathematics [math]Time optimal01 natural sciencesStructural optimizationControl theoryTime optimal trajectoryControl systemEnvelope theoryTrajectorySatelliteTime optimal control0101 mathematics[MATH]Mathematics [math]businessEnvelope (motion)
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Harmonic mitigation of a grid-connected photovoltaic system using shunt active filter

2017

Conventional LC filters cannot compensate effectively harmonics due to non-linear loads in a grid-connected photovoltaic (PV) system. Thus, active power filters (APF) are introduced due to its characteristics and performances, for compensation of harmonics from non-linear loads in the grid-connected photovoltaic (PV) system. This work presents a three-phase voltage-fed shunt active power filter implementation to mitigate the harmonics in which the filter control system focuses on generating reference source current for compensating harmonic effects from non-linear loads. Furthermore, the developed model is verified with an experimental data from a nonlinear load.

Engineeringbusiness.industry020209 energy020208 electrical & electronic engineeringPhotovoltaic system02 engineering and technologyAC powerHarmonic analysisControl theoryFilter (video)Harmonics0202 electrical engineering electronic engineering information engineeringGrid-connected photovoltaic power systemHarmonicElectronic engineeringbusinessActive filter2017 20th International Conference on Electrical Machines and Systems (ICEMS)
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