Search results for "Vibration"

showing 10 items of 823 documents

PVDF based vibration measurements and their correlation with torque estimation in a FOC induction motor drive

2008

This paper presents a study concerning the vibrations generated by an induction motor drive controlled by field oriented control algorithm (FOC). The aim of the study is to identify suitable measurement points and analysis techniques in order to achieve information about vibration generated by an electric drive. Vibrations take origin both by the torque generated by the motor and the motor supply through an inverter, then they are transmitted to neighbouring structures. Torque is estimated on the basis of the estimated flux linkage; vibrations have been both measured and analysed numerically by FEM at two points of the cradle. The numerical and experimental analysis have been carried out fo…

EngineeringElectronic speed controlpolyvinyledene fluoride polymer (PVDF)Vector controlbusiness.industryVibration measurementFlux linkageInduction Motor DrivePolyvinyledene fluoride polymer (PVDF) vibration sensors Vibration measurementvibration sensorsDirect torque controlControl theorySettore ING-IND/12 - Misure Meccaniche E TermicheTorqueTorque sensorbusinessDamping torqueInduction motor
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Experimental validation of a direct pre-design formula for TLCD

2014

The passive control of vibrations has received in recent years a great deal of attention from researchers. Several types of devices have been proposed in order to reduce the dynamic responses of different kinds of structural systems. Among them, the Tuned Liquid Column Damper (TLCD) has proved to be very effective in reducing vibration of structures. However, since the equations governing the TLCD controlled systems response is nonlinear, the calibration of TLCD parameters is time consuming and not convenient to perform in a pre-design phase. In this context, it has recently been introduced by the authors a formula that allows to choose the optimal parameters of TLCD in a direct and fast wa…

EngineeringExperimental investigationbusiness.industryStructural systemMonte Carlo methodContext (language use)Structural engineeringDamperVibrationNonlinear systemControl theoryCalibrationEarthquake shaking tableTuned liquid column damperbusinessStatistical linearization techniqueCivil and Structural EngineeringEngineering Structures
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Vibration analysis for bearing fault detection and classification using an intelligent filter

2014

Abstract This paper proposes an intelligent method based on artificial neural networks (ANNs) to detect bearing defects of induction motors. In this method, the vibration signal passes through removing non-bearing fault component (RNFC) filter, designed by neural networks, in order to remove its non-bearing fault components, and then enters the second neural network that uses pattern recognition techniques for fault classification. Four different categories include; healthy, inner race defect, outer race defect, and double holes in outer race are investigated. Compared to the regular fault detection methods that use frequency-domain features, the proposed method is based on analyzing time-d…

EngineeringFault (power engineering)SignalFault detection and isolationlaw.inventionVibration signallawElectronic engineeringElectrical and Electronic EngineeringFault classificationBearing (mechanical)Artificial neural networkbusiness.industryMechanical EngineeringComputer Science Applications1707 Computer Vision and Pattern RecognitionPattern recognitionFilter (signal processing)Neural networkComputer Science ApplicationsFault indicatorStuck-at faultControl and Systems EngineeringBearingArtificial intelligenceBearing; Fault classification; Fault detection; Neural network; Vibration signal; Mechanical Engineering; Electrical and Electronic Engineering; Computer Science Applications1707 Computer Vision and Pattern RecognitionbusinessFault detectionhuman activitiesMechatronics
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Piezoelectric energy harvesting from raised crosswalk devices

2015

This paper presents the main characteristics of an experimental energy harvesting device that can be used to recover energy from the vehicular and pedestrian traffic. The use of a piezoelectric bender devices leads to a innovative approach to Henergy Harvesting. The study focuses on the definition and specification of a mechanical configuration able to transfer the vibration from the main box to the piezoelectric transducer. The piezoelectric devices tested is the commonly used monolithic piezoceramic material lead-zirconate-titanate (PZT). The experimental results estimate the efficiency of this device tested and identify the feasibility of their use in real world applications. The results…

EngineeringFinite element methodbusiness.industryEnergy harvestingPiezoelectricityElectric circuitTransient analysiVibrationElectric circuit; Energy harvesting; Finite element method; Piezoelectric; Transient analysis; Physics and Astronomy (all)Physics and Astronomy (all)Schema crosswalkElectronic engineeringSettore ICAR/04 - Strade Ferrovie Ed AeroportiPiezoelectricbusinessEnergy harvestingEnergy (signal processing)
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Vibration signature analysis for monitoring rotor broken bar in double squirrel cage induction motors based on wavelet analysis

2014

Purpose – The purpose of this paper is to present a diagnosis technique, for rotor broken bar in double cage induction motor, based on advanced use of wavelet transform analysis. The proposed technique is experimentally validated. Design/methodology/approach – The proposed approach is based on a combined use of frequency sliding and wavelet transform analysis, to isolate the contribution of the rotor fault components issued from vibration signals in a single frequency band. Findings – The proposed technique is reliable for tracking the rotor fault components over time-frequency domain. The quantitative analysis results based on this technique are the proof of its robustness. Research limit…

EngineeringFrequency bandElectrical machines Fault analysis Condition monitoring Fourier transforms Rotating machines RotorsSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciWaveletControl theoryRobustness (computer science)Electrical machineRotorComputational Theory and MathematicElectrical and Electronic EngineeringPractical implicationsVibration signaturebusiness.industrySquirrel-cage rotorApplied MathematicsComputer Science Applications1707 Computer Vision and Pattern RecognitionComputer Science ApplicationsCondition monitoringVibrationComputational Theory and MathematicsFault analysiFourier transformRotating machinebusinessInduction motor
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Fatigue life under non-Gaussian random loading from various models

2004

Fatigue test results on the 10HNAP steel under constant amplitude and random loading with non-Gaussian probability distribution function, zero mean value and wide-band frequency spectrum have been used to compare the life time estimation of the models proposed by Bannantine, Fatemi–Socie, Socie, Wang–Brown, Morel and Łagoda–Macha. Except the Morel proposal which accumulates damage step by step with a proper ethodology, all the other models use a cycle counting method. The rainflow algorithm is used to extract cycles from random histories of damage parameters in time domain. In the last model, where a strain energy density parameter is employed, additionally spectral method is evaluated for …

EngineeringGaussianProbability density function02 engineering and technologyIndustrial and Manufacturing EngineeringMécanique: Vibrations [Sciences de l'ingénieur]symbols.namesakeMécanique: Génie mécanique [Sciences de l'ingénieur]0203 mechanical engineeringRandom loadingApplied mathematicsGeneral Materials ScienceTime domainMécanique: Mécanique des structures [Sciences de l'ingénieur]Spectral methodStrain energyMécanique [Sciences de l'ingénieur]business.industryMechanical Engineering[SPI.MECA.VIBR]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Vibrations [physics.class-ph]Strain energy density functionFatigue life calculationStructural engineering[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]021001 nanoscience & nanotechnology[SPI.MECA.STRU]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of the structures [physics.class-ph][SPI.MECA.GEME]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanical engineering [physics.class-ph]020303 mechanical engineering & transportsMechanics of Materials[SPI.MECA.STRU]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Structural mechanics [physics.class-ph]Modeling and SimulationFrequency domainsymbols0210 nano-technologyCycle countSpectral methodbusinessRainflow algorithmVibration fatigue
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Heuristic and Backstepping Control Strategies for Semiactive Suspension in Automotive Systems Equipped with MR Dampers

2010

Abstract This paper deals with the problem of semiactive vibration reduction in a class of automotive systems. Most conventional suspensions use passive devices to absorb impacts and vibrations, which is generally difficult to adapt to the uncertain circumstances. Semiactive suspension techniques promise a solution to the above problem with some comparatively better features than active and passive suspension devices. In this work, the semiactive suspension with magnetorheological (MR) dampers is applied for the vibration attenuation. Both backstepping and heuristic control strategies are proposed. In the design of backstepping controller, the Dahl model of the MR damper is used to estimate…

EngineeringHeuristic (computer science)business.industryControl engineeringGeneral MedicineDamperVibrationControl theoryBacksteppingMagnetorheological fluidMagnetorheological damperSuspension (vehicle)Reduction (mathematics)businessIFAC Proceedings Volumes
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Fundamental period of infilled reinforced concrete frame structures

2016

AbstractThe fundamental period of vibration appears to be one of the most critical parameters for the seismic design and assessment of structures. In the present paper, the results of a large-scale analytical investigation on the parameters that affect the fundamental period of reinforced concrete structures are presented. The influence of the number of storeys, the number of spans, the span length, the infill wall panel stiffness and the percentage of openings within the infill panel on the fundamental period of infilled RC frames was investigated. Based on these results, a regression analysis is applied in order to propose a new empirical equation for the estimation of the fundamental per…

EngineeringInfill wallModal analysis0211 other engineering and technologies020101 civil engineeringOcean Engineering02 engineering and technologyreinforced concrete frame buildingSpan (engineering)0201 civil engineeringSeismic analysisregression analysiFundamental periodmedicineInfillGeotechnical engineeringSafety Risk Reliability and QualityCivil and Structural Engineering021110 strategic defence & security studiesmodal analysibusiness.industryinfilled frameMechanical EngineeringStiffnessStructural engineeringBuilding and ConstructionMasonryGeotechnical Engineering and Engineering GeologyVibrationSettore ICAR/09 - Tecnica Delle Costruzionimasonrymedicine.symptombusiness
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Laws, Regulations, Standards, and Guidelines for the Protection of Man Against Mechanical Vibration

1986

Regulations that serve to protect workers from the dangers arising from mechanical vibration have been established by the legislators and agencies responsible for work protection, such as ministries of labor and social affairs and industrial insurance organizations. Furthermore, international agreements have also established such protective measures. The corresponding laws, rules or agreements relate to: 1. Occupational diseases 2. Criteria for the evaluation of risk from mechanical vibration and the establishment of exposure limit values 3. Guidelines for the measurement and evaluation of vibration 4. Medical examinations before employment and regular health examinations 5. Technical and o…

EngineeringLaws regulationsMechanical vibrationWork (electrical)business.industryForensic engineeringAccountingbusinessAgricultural tractorPersonal protective equipment
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Feasibility issues in static output-feedback controller design with application to structural vibration control

2014

Recent results in output-feedback controller design make possible an efficient computation of static output-feedback controllers by solving a single-step LMI optimization problem. This new design strategy is based on a simple transformation of variables, and it has been applied in the field of vibration control of large structures with positive results. There are, however, some feasibility problems that can compromise the effectiveness and applicability of the new approach. In this paper, we present some relevant properties of the variable transformations that allow devising an effective procedure to deal with these feasibility issues. The proposed procedure is applied in designing a static…

EngineeringOptimization problem:Informàtica::Automàtica i control [Àrees temàtiques de la UPC]Computer Networks and CommunicationsComputationVibration controlDesign strategyFeedback control systemsMatrius (Matemàtica)Field (computer science)Control theorymatrix theoryMatrix inequalitiesbusiness.industryApplied Mathematics:15 Linear and multilinear algebra; matrix theory [Classificació AMS]:15 Linear and multilinear algebra [Classificació AMS]:Matemàtiques i estadística [Àrees temàtiques de la UPC]Control engineeringVariable (computer science)Transformation (function)Control and Systems EngineeringSistemes de control per retroaccióSignal ProcessingControl and Systems Engineering; Computer Networks and Communications; Applied Mathematics; Signal ProcessingbusinessJournal of the Franklin Institute
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