Search results for "Signal processing"

showing 10 items of 2451 documents

Life cycle assessment of a solar thermal collector: sensitivity analysis, energy and environmental balances

2005

Abstract Starting from the results of a life cycle assessment of solar thermal collector for sanitary warm water, an energy balance between the employed energy during the collector life cycle and the energy saved thanks to the collector use has been investigated. A sensitivity analysis for estimating the effects of the chosen methods and data on the outcome of the study was carried out. Uncertainties due to the eco-profile of input materials and the initial assumptions have been analysed. Since the study is concerned with a renewable energy system, attention has been focused on the energy indexes and in particular the “global energy consumption”. Following the principles of Kyoto Protocol, …

EngineeringRenewable Energy Sustainability and the Environmentbusiness.industryEnergy balanceEnergy payback timeEnergy consumptionRenewable energySensitivity analysiKyoto ProtocolOperations managementSensitivity (control systems)Life cycle assessment (LCA)businessProcess engineeringLife-cycle assessmentSolar thermal collectorEnergy (signal processing)Solar thermal collector
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An open access database for the evaluation of heart sound algorithms

2016

In the past few decades, analysis of heart sound signals (i.e. the phonocardiogram or PCG), especially for automated heart sound segmentation and classification, has been widely studied and has been reported to have the potential value to detect pathology accurately in clinical applications. However, comparative analyses of algorithms in the literature have been hindered by the lack of high-quality, rigorously validated, and standardized open databases of heart sound recordings. This paper describes a public heart sound database, assembled for an international competition, the PhysioNet/Computing in Cardiology (CinC) Challenge 2016. The archive comprises nine different heart sound databases…

EngineeringResearch groupsDatabases FactualPhysiologySpeech recognition0206 medical engineeringphonocardiogram (PCG)Biomedical EngineeringBiophysicsMEDLINE02 engineering and technologycomputer.software_genreArticleheart soundAccess to InformationTECNOLOGIA ELECTRONICACoronary artery diseasePhysioNet/CinC Challenge[INFO.INFO-TS]Computer Science [cs]/Signal and Image ProcessingPhysiology (medical)heart sound classification0202 electrical engineering electronic engineering information engineeringmedicineHumansSegmentationHeart valveSound (geography)databasePhonocardiogramgeographygeography.geographical_feature_categoryDatabasebusiness.industryPhonocardiographySignal Processing Computer-Assistedmedicine.disease020601 biomedical engineeringHeart Soundsmedicine.anatomical_structureheart sound segmentationHeart sounds020201 artificial intelligence & image processingbusinessAlgorithmcomputerAlgorithms
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Lighting control systems: Factors affecting energy savings' evaluation

2015

Abstract The use of automated lighting control systems allows to reduce lighting costs and to achieve significant energy savings. The energy performances of controls are affected by many factors, the impact of which is very difficult to account for during the design process. The goal of this paper is to describe the factors that influence the control systems’ energy performances, to analyze how the currently available calculation tools take them into account and finally to propose a simple method to adjust results obtained from the simulation software.

EngineeringSIMPLE (military communications protocol)business.industryLighting control systemControl engineeringcomputer.software_genreSimulation softwarelighting control systemsenergy savingsEnergy (all)Energy(all)Control systemEnergy savingDaylightDaylightSmart lightingbusinessEngineering design processcomputerEnergy (signal processing)Simulation
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Corrigendum to “A procedure to calculate the five-parameter model of crystalline silicon photovoltaic modules on the basis of the tabular performance…

2014

Only few manufactures provide the wide set of graphical data that are necessary to use high performance predictive tools for PV systems. On the other hand, reliable graphical data require accurate laboratory measurements that increase manufacturing costs. For this reason PV system designers have to choose between the use of cheap PV modules, lacking in technical data, and the reliable energy predictions that are possible only if the current–voltage characteristics are provided by the PV module manufacturers. This paper describes the procedure to evaluate the parameters of a one-diode equivalent circuit able to accurately epresent the electrical behaviour of a PV panel by means of the minimu…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleBasis (linear algebra)business.industryMechanical EngineeringPhotovoltaic systemBuilding and ConstructionPhotovoltaic modules Five-parameter model I–V characteristics Solar energyManagement Monitoring Policy and LawEngineering physicsGeneral EnergyElectronic engineeringCrystalline siliconbusinessEnergy (signal processing)Applied Energy
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A procedure to calculate the five-parameter model of crystalline silicon photovoltaic modules on the basis of the tabular performance data

2013

Abstract Only few manufactures provide the wide set of graphical data that are necessary to use high performance predictive tools for PV systems. On the other hand, reliable graphical data require accurate laboratory measurements that increase manufacturing costs. For this reason PV system designers have to choose between the use of cheap PV modules, lacking in technical data, and the reliable energy predictions that are possible only if the current–voltage characteristics are provided by the PV module manufacturers. This paper describes the procedure to evaluate the parameters of a one-diode equivalent circuit able to accurately represent the electrical behaviour of a PV panel by means of …

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleBasis (linear algebra)business.industryMechanical EngineeringReliability (computer networking)Photovoltaic systemBuilding and ConstructionVisual Basic for ApplicationsManagement Monitoring Policy and LawReliability engineeringSet (abstract data type)General EnergyPhotovoltaic modules; Five-parameter model; I–V characteristics; Solar energyEquivalent circuitCrystalline siliconbusinessEnergy (signal processing)Applied Energy
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A security and surveillance application of the innovative Monitoring Underwater Buoy Systems (MUnBuS) on the Protected Marine Area (AMP) of capo gall…

2015

The proposed low cost systems shows the results obtained in the implementation and testing on real security application to Protected Marine Area surface and submarine environment of a innovative Monitoring Underwater Buoy Systems (MUnBuS) for installation with IR-CCTV-Cam, ultrasonic dolphin warning system and Green Laser Perimeter Detection. This concerning innovative Monitoring Underwater Buoy Systems that can be remotely controlled from the ground, air, satellite and sea and from a Center of Supervision Telecontroller And Data Acquisition and Monitoring (Mobile- STADAM Center). The Buoy is hosts for the radio or satellite communication equipment, the downloading and telemetering data equ…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleBuoyWarning systemAcoustics and Ultrasonicsbusiness.industryElectrical engineeringSubmarineMonitoring BuoyOcean EngineeringSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciOceanographyData acquisitionSettore ING-INF/04 - AutomaticaEnvironmental monitoringSignal ProcessingCommunications satelliteUnderwaterUnderwater acousticsbusinessInstrumentationMarine engineering
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An inertial system for the production of electricity and hydrogen from sea wave energy

2015

This paper aims at describing a small scale prototype of a complete wave energy converter system for hydrogen production promoting the opportunity of installation in Sicily, in the Mediterranean Sea. The opportunity to produce hydrogen from sea-water identifies ocean wave energy as the most promising solution for electricity generation including hydrogen production and storage. Even if hydrogen is considered one of the most promising secondary sources, criticism arises from both the academic and the industrial world mainly because hydrogen production requires electricity consumption. Furthermore, safety problems concerning hydrogen storage and transport are actually the main hindrance to fu…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleHydrogenAcoustics and Ultrasonicsbusiness.industryMechanical engineeringchemistry.chemical_elementOcean EngineeringSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciOceanographyCommercializationinertial systemRenewable energyHydrogen storageElectricity generationchemistryhydrogenSignal ProcessingProduction (economics)ElectricitybusinessProcess engineeringInstrumentationHydrogen productionwave energy
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Near zero energy island with sea wave energy: The case study of Pantelleria in Mediterranean Sea

2016

In this paper the authors present a study of the transition of an energy generation system for a real MV/LV distribution system from one that is "fuel-based" to a "renewables-based" system in particular from sea wave energy, using the data acquired from an innovative generator prototype realized by University of Palermo. The study is carried out for a real islanded network located in the Island of Pantelleria (Mediterranean Sea). The procedures applied in the present article, as well as the main equations used, are the result of previous applications made in different technical fields that show a good replicability [1]-[7].

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleMeteorologybusiness.industryZero-point energyEnergy consumptionOceanographyIslandWave EnergyRenewable energyGenerator (circuit theory)Distribution systemMediterranean seaElectricity generationPoint AbsorberAutomotive EngineeringMediterranean SeaWave PotentialbusinessPantelleriaSeismologyEnergy (signal processing)OCEANS 2016 - Shanghai
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Life cycle energy performances of a Net Zero Energy prefabricated building in Sicily

2017

The paper presents the energy performances in a life cycle perspective of a prefabricated building. The building was simulated in energy plus and validated on monitored data. To avoid the shifting of energy burdens from one life cycle stage to others, a Life Cycle Energy Assessment was performed. The primary energy use throughout the building's life cycle is 1,242 GJ. The materials production stage consumes the highest amount of primary energy (680 GJ) followed by the use stage (484 GJ), while the construction and end-of-life require respectively 1.7 % and the 4.6 % of total primary energy. (C) 2017 The Authors. Published by Elsevier Ltd. Peer-review under responsibility of the scientific c…

EngineeringSettore ING-IND/11 - Fisica Tecnica AmbientaleZero-energy buildingPrimary energyNet Zero Energy Buildingsbusiness.industry020209 energyEnvironmental engineering02 engineering and technology010501 environmental sciences01 natural sciencesEnergy assessmentModular BuildingsEnergy life-cycle approach0202 electrical engineering electronic engineering information engineeringNet Zero Energy BuildingbusinessCartographyEmbodied energyEmbodied energyEnergy (signal processing)0105 earth and related environmental sciences
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Comparing different control strategies for indoor thermal comfort aimed at the evaluation of the energy cost of quality of building

2010

Abstract The rapid improvement in the standard of living requires more detailed and sophisticated methods of evaluating comfort conditions. But, maintaining thermal comfort conditions in confined environments may require complex regulation procedures and the proper management of heating, ventilating and air conditioning (HVAC) systems. In turn, the requirements for indoor thermal comfort do not necessarily coincide with those of energy saving purposes, which in the last years are becoming a crucial issue owing to the enactment of the European Energy Performance of Buildings Directive (EPBD). The aim of this work is to compare different indoor control thermal comfort strategies in view of th…

EngineeringSettore ING-IND/11 - Fisica Tecnica Ambientalebusiness.industrymedia_common.quotation_subjectWork (physics)Energy Engineering and Power TechnologyPID controllerThermal comfortControl engineeringIndustrial and Manufacturing EngineeringReliability engineeringControl theoryAir conditioningHVACQuality (business)indoor thermal comfort quality building energy performancebusinessEnergy (signal processing)media_commonApplied Thermal Engineering
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