Search results for "1707"

showing 10 items of 274 documents

A perturbation approach for the response of dynamically modified structural systems

1998

The problem of the structural analysis under changes of dynamical parameters is of particular interest. This is due to the fact that often the real structures are different from the predicted ones. In this paper, an unconditionally stable step-by-step procedure, able to evaluate the deterministic response of linear structures with modifications, is presented. The proposed procedure requires the evaluation of the transition matrix, which is the fundamental operator of the step-by-step solution, by means of a perturbation approach. This technique overcomes the difficulties connected with the evaluation of the eigenproperties of the modified structures usually required to obtain the transition…

Dynamic response; Structural analysis; pertubation techniquesMechanical EngineeringStructural systemStochastic matrixPerturbation (astronomy)Computer Science Applications1707 Computer Vision and Pattern RecognitionComputer Science ApplicationsModeling and simulationModeling and SimulationGeneral Materials ScienceMaterials Science (all)AlgorithmMathematicsCivil and Structural Engineering
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Life cycle assessment of roads: Material and process related energy savings

2018

The need for climate change mitigation calls for significant actions to match the sustainable development goals and, in this context, road construction and management play a relevant role (cf. EU Green Public Procurement Criteria for Road Design, Construction and Maintenance and Environmental Product Declarations - EPD). In such a context, the role of the Life Cycle Assessment (LCA) methodology is broadly recognized as a tool to quantify sustainability of processes and systems. This study aims at calculating the life-cycle energy and carbon footprint of a typical Italian urban road, including materials production, transportation, construction, maintenance, and rehabilitation. The LCA approa…

Eco-designRoad design2300Modeling and SimulationLife-cycle energyChemistry (all)Computer Science Applications1707 Computer Vision and Pattern RecognitionGeneral ChemistryLife Cycle Assessment (LCA)Computer Science ApplicationsGeneral Environmental ScienceModelling, Measurement and Control C
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On the repeatability of the EMI for the monitoring of bonded joints

2015

We study the feasibility and the repeatability of the electromechanical impedance (EMI) method for the health monitoring of lightweight bonded joints. The EMI technique exploits the coupling between the displacement field and the potential field of a piezoelectric material, by attaching or embedding a piezoelectric transducer to the structure to be monitored. The sensor is excited by an external voltage and the electrical admittance which is the ratio between the electric current and the applied voltage is measured as it depends on the mechanical coupling between the transducer and the host structure. Owing to this interaction, the admittance may represent a signature for the health of the …

Electromechanical impedance methodCouplingStructural health monitoringAdmittanceMaterials scienceElectronic Optical and Magnetic MaterialAcousticsLightweight structureBonded jointComputer Science Applications1707 Computer Vision and Pattern RecognitionRepeatabilityCondensed Matter PhysicsPiezoelectricityApplied MathematicTransducerEMIStructural health monitoringElectrical and Electronic EngineeringVoltageSPIE Proceedings
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Semiactive Control Methodologies for Suspension Control With Magnetorheological Dampers

2012

Authors version of an article published in the journal: IEEE/ASME Transactions on Mechatronics. Also available from the publisher at: http://dx.doi.org/10.1109/TMECH.2011.2107331 Suspension systems are one of the most critical components of transportation vehicles. They are designed to provide comfort to the passengers to protect the chassis and the freight. Suspension systems are normally provided with dampers that mitigate these harmful and uncomfortable vibrations. In this paper, we explore two control methodologies (in time and frequency domain) used to design semiactive controllers for suspension systems that make use of magnetorheological dampers. These dampers are known because of th…

EngineeringChassisbackstepping magnetorheological (MR) damper quantitative feedback control semiactive control suspension controlNonlinear controlsuspension controlDamperQuantitative feedback theoryControl theoryMagnetorheological dampersmagnetorheological (MR) damperAutomòbils -- AmortidorsElectrical and Electronic EngineeringSuspension (vehicle)Amortidors magneto-reològicsquantitative feedback controlsemiactive controlbusiness.industryVDP::Technology: 500::Mechanical engineering: 570Linear systemBackstepping; magnetorheological (MR) damper; quantitative feedback control; semiactive control; suspension control; Control and Systems Engineering; Computer Science Applications1707 Computer Vision and Pattern Recognition; Electrical and Electronic EngineeringComputer Science Applications1707 Computer Vision and Pattern RecognitionControl engineeringComputer Science ApplicationsBacksteppingControl and Systems EngineeringBacksteppingMagnetorheological fluidbusinessIEEE/ASME Transactions on Mechatronics
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Fifty Fuzzily Gone, Many More to Go: An Appreciation of Fuzziness’ Present and an Outlook on What May Come

2015

Fifty years of Fuzziness represents a good chance to look back on the rich history of the discipline and the scientists that were part of this history, and at the long and varied course of one of the few really innovative, disruptive ideas of the last century, including the development of its many applications. But instead we would like to take this interesting opportunity to discuss the present state of affairs, especially in relation to the application of Fuzziness to the cognitive domain. From such reflections a possible path is defined toward the evolution of Fuzziness, under the umbrella of computational intelligence, toward an all-encompassing experimental science of language, reasoni…

EngineeringCognitive domainbusiness.industryComputational intelligenceState of affairsCognitionComputer Science Applications1707 Computer Vision and Pattern RecognitionExperimental scienceComputer Science ApplicationsEpistemologyLawInformation systemRelation (history of concept)businessInformation Systems
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Allocation of actuators and sensors for coupled-adjacent-building vibration attenuation

2013

An actuator and sensor allocation approach is proposed for the design of coupled-adjacent-building vibration suppression under seismic excitation. This paper first establishes a full-order model of adjacent buildings with the location information of actuators and sensors. Then, the order of the model is reduced via modal cost analysis, by retaining the modes contributing the most. In view of the fact that the output powers of the actuators are limited, this paper brings forward a mixed H∞/GH2 control. By considering that not all the states of the system can be measured by the sensors, a dynamic output feedback controller is designed. The genetic algorithm is employed to obtain the locations…

EngineeringEarthquake engineeringbusiness.industryModal analysisAdjacent buildingsdynamic output feedbackvibration controlVibration controlComputer Science Applications1707 Computer Vision and Pattern RecognitionVibration attenuationVibrationModalControl theoryRobustness (computer science)allocationControl and Systems EngineeringComputerSystemsOrganization_SPECIAL-PURPOSEANDAPPLICATION-BASEDSYSTEMSElectrical and Electronic EngineeringActuatorbusinessAdjacent buildings; allocation; dynamic output feedback; vibration control; Control and Systems Engineering; Computer Science Applications1707 Computer Vision and Pattern Recognition; Electrical and Electronic Engineering
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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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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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Robust control of stochastic systems against bounded disturbances with application to flight control

2014

This paper investigates the problems of state observer design and observer-based integral sliding-mode control (SMC) for a class of Itô stochastic systems subject to simultaneous input and output disturbances. A new type of sliding-mode-based descriptor observer method is developed to approximate the system state and disturbance vectors. An integral-type SMC scheme is proposed based on the state estimation to stabilize the overall system. The main contributions of this approach are as follows: 1) The desired estimations of state and disturbance vectors can be obtained simultaneously, and 2) in the designed sliding-mode observer, the integral term of the Itô stochastic noise is eliminated …

EngineeringMathematical optimizationObserver (quantum physics)business.industryInput disturbanceintegral sliding-mode control (SMC)Computer Science Applications1707 Computer Vision and Pattern Recognitionoutput disturbanceNonlinear systemMatrix (mathematics)NoiseInput disturbance; integral sliding-mode control (SMC); output disturbance; sliding-mode observer (SMO); state estimation; Control and Systems Engineering; Computer Science Applications1707 Computer Vision and Pattern Recognition; Electrical and Electronic EngineeringReachabilityControl theoryControl and Systems EngineeringBounded functionsliding-mode observer (SMO)State observerstate estimationRobust controlElectrical and Electronic Engineeringbusiness
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Heuristic-Based Shiftable Loads Optimal Management in Smart Micro-Grids

2015

In this paper, an optimal power dispatch problem on a 24-h basis for distribution systems with distributed energy resources (DER) also including directly controlled shiftable loads is presented. In the literature, the optimal energy management problems in smart grids (SGs) where such types of loads exist are formulated using integer or mixed integer variables. In this paper, a new formulation of shiftable loads is employed. Such formulation allows reduction in the number of optimization variables and the adoption of real valued optimization methods such as the one proposed in this paper. The method applied is a novel nature-inspired multiobjective optimization algorithm based on an original…

EngineeringMathematical optimizationsmart-gridPareto optimizationwarm-optimizationHeuristic (computer science)Energy managementswarm-optimizationDemand side managementmart-gridsReduction (complexity)Electric power systemDemand side management;Pareto optimization;swarm-optimization;shiftable loads;smart-gridshiftable loadElectrical and Electronic EngineeringMulti-swarm optimizationbusiness.industryComputer Science Applications1707 Computer Vision and Pattern Recognitionsmart-gridsComputer Science ApplicationsSettore ING-IND/33 - Sistemi Elettrici Per L'Energiashiftable loadSmart gridControl and Systems EngineeringDistributed generationshiftable loadsbusinessInformation SystemsInteger (computer science)IEEE Transactions on Industrial Informatics
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