Search results for "approximation"

showing 10 items of 818 documents

A polynomial algorithm solving a special class of hybrid optimal control problems

2006

Hybrid optimal control problems are, in general, difficult to solve. A current research goal is to isolate those problems that lead to tractable solutions [5]. In this paper, we identify a special class of hybrid optimal control problems which are easy to solve. We do this by using a paradigm borrowed from the Operations Research field. As main result, we present a solution algorithm that converges to the exact solution in polynomial time. Our approach consists in approximating the hybrid optimal control problem via an integer-linear programming reformulation. The integer-linear programming problem is a Set-covering one with a totally unimodular constraint matrix and therefore solving the S…

EngineeringMathematical optimizationForce densityComputational complexity theoryLinear programmingbusiness.industrySpecial classOptimal controlPolynomial algorithmControllabilityHybrid optimal controlAlgorithmsHybrid computersInteger programmingLinear control systemsUnimodular matrixControl theoryHuman machine interactionLocal search (optimization)Relaxation (approximation)Settore MAT/09 - Ricerca OperativabusinessInteger programmingTime complexityMathematics2006 IEEE Conference on Computer Aided Control System Design, 2006 IEEE International Conference on Control Applications, 2006 IEEE International Symposium on Intelligent Control
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2014

A 3D imaging technique using a high speed binocular stereovision system was developed in combination with corresponding image processing algorithms for accurate determination of the parameters of particles leaving the spinning disks of centrifugal fertilizer spreaders. Validation of the stereo-matching algorithm using a virtual 3D stereovision simulator indicated an error of less than 2 pixels for 90% of the particles. The setup was validated using the cylindrical spread pattern of an experimental spreader. A 2D correlation coefficient of 90% and a Relative Error of 27% was found between the experimental results and the (simulated) spread pattern obtained with the developed setup. In combin…

EngineeringPixelCorrelation coefficientbusiness.industryBiochemistryAtomic and Molecular Physics and OpticsAnalytical ChemistryApproximation errorPosition (vector)Motion estimationDigital image processingCalibrationComputer visionArtificial intelligenceElectrical and Electronic EngineeringbusinessInstrumentationSpinningSensors
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Design of complex sheet metal forming processes: a new computer aided progressive approach

2010

The growing interest in sheet metal stamping processes, particularly in automotive industry, led to three main issues in this field: request of very complex shapes; growing interest in springback control; solution of multi-objective problems. This makes the design of the sheet metal stamping processes very difficult, since the number of both design variables and design objectives are progressively increased; therefore, proper design methodologies to reduce times and costs are highly required. In this paper, an innovative design approach able to manage and optimize complex stamping operations is proposed. In particular, a progressive design approach based on the integration between numerical…

Engineeringbusiness.industryAutomotive industryForming processesSheet metal stampingComputational intelligenceStampingManufacturing engineeringMoving least square approximationDesign objectivevisual_artComputer-aidedvisual_art.visual_art_mediumMulti-objective optimisationGeneral Materials ScienceResponse surface methodologybusinessSheet metalSettore ING-IND/16 - Tecnologie E Sistemi Di Lavorazione
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A circuit model of a 5kW fuel cell

2013

In the last few years, industrial research has been focused on renewable energy sources. Owing to combined heat-power generation option, fuel cells have attracted much interest for a wide variety of research areas. Household appliances are still the most promising applications. Fuel cell modeling is still a critical topic to focus on, affecting each stage of power system design. This paper describes an empirical method to model a proton exchange membrane fuel cell. The modeling approach is applied to a 5kW Nuvera PowerFlow fuel cell. A circuit model is proposed for further applications. PSPICE implementation is described and the parameters tuning procedure is discussed. Simulation and exper…

Engineeringbusiness.industrySpiceIndustrial researchProton exchange membrane fuel cellmodelingSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciAutomotive engineeringRenewable energyfuel cellCogenerationApproximation errorElectronic engineeringFuel cellspower converterbusinessFocus (optics)renewable energy sources
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New solutions for prefabricated secondary substations in the view of sustainability

2016

The secondary substations will assume an important role as “smart nodes” of the smart grid. So in few years there will be a widespread dissemination on the territory of this apparatus. Consequently, great care have to be taken not only on safety issues, but also on the constructive methodology, in order to determine low environmental impact and decommissioning cost. This paper focuses on innovative solutions for the realization of prefabricated secondary substations, in the direction of sustainability. Innovative layout and enclosure topologies have been here taken into account. In particular, by considering that the substation concrete box is, at the same time, uneconomical and with strong…

Engineeringbusiness.industryprefabricated substationRenewable Energy Sustainability and the Environment020209 energyEnclosureEnergy Engineering and Power Technology02 engineering and technologyhuman exposureSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciNetwork topologyCivil engineeringConstructiveConstruction engineeringNuclear decommissioningSmart gridComputer Networks and CommunicationHardware and ArchitectureContainer (abstract data type)Sustainability0202 electrical engineering electronic engineering information engineeringEnvironmental impact assessmentdistance of first approximation (DPA)businesssmart grid
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Diagnosis of mechanical unbalance for double cage induction motor load in time-varying conditions based on motor vibration signature analysis

2013

This paper investigates the detectability of mechanical unbalance in double cage induction motor load using motor vibration signature analysis technique. Rotor imbalances induce specific harmonic components in electrical, electromagnetical, and mechanical quantities. Harmonic components characteristic of this category of rotor faults, issued from vibration signals analysis, are closely related to rotating speed of the rotor, which complicates its detection under non-stationary operating conditions of the motor. Firstly, experimental results were performed first under healthy and mechanical load unbalance cases, for different load levels under steady-state operating conditions to evaluate th…

Engineeringcondition monitoringSettore ING-IND/32 - Convertitori Macchine E Azionamenti Elettricilaw.inventionelectromagnetical quantitieWaveletRotorlawInduction motorelectrical quantitieMechanical loadrotating speedRotor (electric)Condition monitoringharmonic componentTime-frequency analysicurrent signature analysiTransient analysiSteady-statewavelet transformsmotor radial vibration signature analysis techniquemechnical load unbalanceHarmonicwavelet analysimotor axial vibration signature analysis techniquemotor vibration signature analysiApproximation methodtime-varying conditionVibrationvibration measurementmechanical quantitienonstationary operating conditionControl theorymechanical unbalanceSensitivity (control systems)vibration signals analysirotor imbalancewavelet transformvibration signature analysiRenewable Energy Sustainability and the Environmentrotor faultbusiness.industryfault diagnosiFFT analysifast Fourier transformVibrationdouble cage induction motor loadignal processingbusinessInduction motor2013 International Conference on Renewable Energy Research and Applications (ICRERA)
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Second-order hydrodynamic effects on the response of three semisubmersible floating offshore wind turbines

2020

Abstract Floating structures have become the most feasible solution for supporting wind turbines when offshore wind project move to deeper water. In this paper, a hydrodynamic analysis of three different semisubmersible floating offshore wind turbines is carried out including second-order hydrodynamic effects. The three examined platforms are V-shaped semisubmersible, Braceless semisubmersible and OC4-DeepCwind semisubmersible and are used to support the NREL 5 MW reference wind turbine. The main objective of the present study is to investigate and compare the hydrodynamic response of the three different semisubmersible floaters in two water depths (100 m, and 200 m) under different load co…

Environmental Engineering020209 energyHydrodynamic loadsOcean Engineering02 engineering and technology01 natural sciencesTurbineTransfer functionSemisubmersible floating wind turbines010305 fluids & plasmas0103 physical sciences0202 electrical engineering electronic engineering information engineeringWind powerSecond-order wave loadsbusiness.industryTension (physics)Newman's approximationMooringOffshore wind powerDragEngineering and TechnologybusinessFloating platformQuadratic transfer functionGeologyMarine engineeringOcean Engineering
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A shoreline boundary condition for a highly nonlinear Boussinesq model for breaking waves

2012

Abstract A physically based strategy was used to model swash zone hydrodynamics forced by breaking waves within a Boussinesq type of model. The position and the velocity of the shoreline were determined continuously in space by solving the physically-based equations of the shoreline motion; moreover, a fixed grid method, with a wet–dry interface, was adopted for integrating the Boussinesq model. The numerical stability of the model was improved by means of an extrapolation method. To validate the proposed methodology, the classical analytical solution for the shoreline motion of a monochromatic wave train over a plane beach was considered. The comparison between the analytical and numerical…

Environmental EngineeringBoussinesq modelSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaExtrapolationrun-up Boussinesq model Breaking wavesBreaking waveOcean EngineeringMechanicsRun-upPhysics::GeophysicsNonlinear systemBreaking wavesGeotechnical engineeringBoundary value problemBoussinesq approximation (water waves)Run-up; Boussinesq model; Breaking wavesMonochromatic electromagnetic plane waveGeologySwashNumerical stability
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Modelling Inoculum Availability ofPlurivorosphaerella nawaein Persimmon Leaf Litter with Bayesian Beta Regression

2019

AbstractCircular leaf spot (CLS), caused byPlurivorosphaerella nawae, is a serious disease of persimmon (Diospyros kaki) inducing necrotic lesions on leaves, defoliation and fruit drop. Under Mediter-ranean conditions,P. nawaeforms pseudothecia in the leaf litter during winter and ascospores are released in spring infecting susceptible leaves. Persimmon growers are advised to apply fungicides for CLS control during the period of inoculum availability, which was defined based on ascospore counts under the microscope. A model of inoculum availability ofP. nawaewas developed and evaluated as an alternative to ascospore counts. Leaf litter samples were collected weekly in L’Alcúdia from 2010 to…

EpidemiologyVapour Pressure DeficitMycosphaerella nawaePlant ScienceMycologyEarly warning systemsPlurivorosphaerella nawaeVapor pressure deficitU40 Surveying methodsCLs upper limitsMycologyLeaf spotU10 Mathematical and statistical methodsH20 Plant diseasesDiospyros kakiFungicidesWarning systemsEcologybiologyDiospyros kakiPlant litterbiology.organism_classificationIntegrated nested Laplace approximation (INLA)FungicideHorticultureAscosporeCircular leaf spotBeta regressionAgronomy and Crop Sciencedecision support systems
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Approximation properties of higher degree F-transforms based on B-splines

2015

The paper deals with the F-transform with polynomial components with respect to a generalized fuzzy partition given by B-splines. We investigate approximation properties of the inverse F-transform in this case and prove that using B-splines allows us to improve the quality of approximation of smooth functions.

Equioscillation theoremDiscrete mathematicsPolynomialApproximation theoryBox splineApproximation errorApplied mathematicsInverseSpouge's approximationMinimax approximation algorithmMathematics2015 IEEE International Conference on Fuzzy Systems (FUZZ-IEEE)
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