Search results for "Electrical and Electronic Engineering"

showing 10 items of 3952 documents

High Frequency Data Acquisition System for Modelling the Impact of Visitors on the Thermo-Hygrometric Conditions of Archaeological Sites: A Casa di D…

2018

[EN] The characterization of the microclimatic conditions is fundamental for the preventive conservation of archaeological sites. In this context, the identification of the factors that influence the thermo-hygrometric equilibrium is key to determine the causes of cultural heritage deterioration. In this work, a characterization of the thermo-hygrometric conditions of Casa di Diana (Ostia Antica, Italy) is carried out analyzing the data of temperature and relative humidity recorded by a system of sensors with high monitoring frequency. Sensors are installed in parallel, calibrated and synchronized with a microcontroller. A data set of 793,620 data, arranged in a matrix with 66,135 rows and …

thermo-hygrometric balanceFrequency dataContext (language use)010501 environmental scienceslcsh:Chemical technologyLogistic regressionrelative humidity01 natural sciencesBiochemistryArticleAnalytical ChemistryThermo-hygrometric balanceContinuous monitoringVisitorsvisitors; temperature; relative humidity; thermo-hygrometric balance; continuous monitoring; preventive conservationlcsh:TP1-1185Relative humidityElectrical and Electronic EngineeringInstrumentation0105 earth and related environmental sciencesEnvironmental humidity010401 analytical chemistryContinuous monitoringTemperatureClimatic variablestemperatureRelative humiditypreventive conservationvisitorsArchaeologyAtomic and Molecular Physics and Opticscontinuous monitoring0104 chemical sciencesFISICA APLICADAEnvironmental scienceThermal balancePreventive conservation
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Applications and non-idealities of submicron Al–AlOx–Nb tunnel junctions

2016

We have developed a technique to fabricate sub-micron, 0.6µm×0.6µm Al-AlOx-Nb tunnel junctions using a standard e-beam resist, angle evaporation and double oxidation of the tunneling barrier, resulting in high quality niobium, as determined by the the high measured values of the critical temperature TC ∼ 7.5 K and the gap ∆ ∼ 1.3 meV. The devices show great promise for local nanoscale thermometry in the temperature range 1 - 7.5 K. Electrical characterization of the junctions was performed at sub-Kelvin temperatures both with and without an external magnetic field, which was used to suppress superconductivity in Al and thus bring the junction into a normal-metal-insulator-superconductor (NI…

thermometryNiobiumFOS: Physical scienceschemistry.chemical_element02 engineering and technology01 natural sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)0103 physical sciencesMaterials ChemistryElectrical and Electronic Engineering010306 general physicsNIS junctionQuantum tunnellingSuperconductivityPhysicssuperconducting tunnel junctionCondensed Matter - Mesoscale and Nanoscale Physicssub-gap currentbusiness.industryMetals and AlloysAtmospheric temperature range021001 nanoscience & nanotechnologyCondensed Matter PhysicsEvaporation (deposition)Magnetic fieldCharacterization (materials science)ResistchemistryCeramics and CompositesOptoelectronicsniobium0210 nano-technologybusinessSuperconductor Science and Technology
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Vacuum-Deposited Cesium Tin Iodide Thin Films with Tunable Thermoelectric Properties

2022

Most current thermoelectric materials have important drawbacks, such as toxicity, scarceness, and peak operating temperatures above 300 °C. Herein, we report the thermoelectric properties of different crystalline phases of Sn-based perovskite thin films. The 2D phase, Cs2SnI4, is obtained through vacuum thermal deposition and easily converted into the black β phase of CsSnI3(B-β CsSnI3) by annealing at 150 °C. B-β CsSnI3is a p-type semiconductor with a figure of merit (ZT) ranging from 0.021 to 0.033 for temperatures below 100 °C, which makes it a promising candidate to power small electronic devices such as wearable sensors which may be interconnected in the so-called Internet of Things. T…

thin filmEnergy Engineering and Power TechnologyConductivitat elèctricatinMaterials ChemistryElectrochemistryChemical Engineering (miscellaneous)conductivityElectrical and Electronic Engineeringroom temperatureSeebeckthermoelectricsMaterialsperovskite
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Overview of Power Electronic Switches: A Summary of the Past, State-of-the-Art and Illumination of the Future.

2020

As the need for green and effective utilization of energy continues to grow, the advancements in the energy and power electronics industry are constantly driven by this need, as both industries are intertwined for obvious reasons. The developments in the power electronics industry has over the years hinged on the progress of the semiconductor device industry. The semiconductor device industry could be said to be on the edge of a turn into a new era, a paradigm shift from the conventional silicon devices to the wide band gap semiconductor technologies. While a lot of work is being done in research and manufacturing sectors, it is important to look back at the past, evaluate the current progr…

thyristorsEngineeringinsulated gate bipolar transistorslcsh:Mechanical engineering and machinery02 engineering and technologyReviewbipolar transistors01 natural sciencesElectronic switchpower semiconductor devicesPower electronics0103 physical sciences0202 electrical engineering electronic engineering information engineeringPower semiconductor devicelcsh:TJ1-1570Electrical and Electronic Engineering010302 applied physicsbusiness.industrypower semiconductor switchesMechanical Engineering020208 electrical & electronic engineeringThyristorSemiconductor deviceVDP::Teknologi: 500Work (electrical)Control and Systems EngineeringParadigm shiftState (computer science)businessTelecommunicationspower transistorsMicromachines
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Longitudinal Gait Analysis of a Transfemoral Amputee Patient: Single-Case Report from Socket-Type to Osseointegrated Prosthesis

2023

The aim of the present case report was to provide a longitudinal functional assessment of a patient with transfemoral amputation from the preoperative status with socket-type prosthesis to one year after the osseointegration surgery. A 44 years-old male patient was scheduled for osseointegration surgery 17 years after transfemoral amputation. Gait analysis was performed through 15 wearable inertial sensors (MTw Awinda, Xsens) before surgery (patient wearing his standard socket-type prosthesis) and at 3-, 6-, and 12-month follow-ups after osseointegration. ANOVA in Statistical Parametric Mapping was used to assess the changes in amputee and sound limb hip and pelvis kinematics. The gait symm…

transfemoral amputation; osseointegration; socket-type; biomechanics; wearable sensors; gait analysis; gait symmetry; case reportElectrical and Electronic EngineeringSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeBiochemistryInstrumentationbiomechanics case report gait analysis gait symmetry osseointegration socket-type transfemoral amputation wearable sensorsAtomic and Molecular Physics and OpticsAnalytical ChemistrySensors
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Stationary, Second Use Battery Energy Storage Systems and Their Applications: A Research Review

2021

The global demand for electricity is rising due to the increased electrification of multiple sectors of economic activity and an increased focus on sustainable consumption. Simultaneously, the share of cleaner electricity generated by transient, renewable sources such as wind and solar energy is increasing. This has made additional buffer capacities for electrical grids necessary. Battery energy storage systems have been investigated as storage solutions due to their responsiveness, efficiency, and scalability. Storage systems based on the second use of discarded electric vehicle batteries have been identified as cost-efficient and sustainable alternatives to first use battery storage syste…

trendsTechnologyControl and Optimizationbusiness.product_categorysecond usehybrid storageComputer sciencebarriers020209 energystationary energy storage systemEnergy Engineering and Power Technology02 engineering and technology010501 environmental sciences01 natural sciencesElectrificationElectric vehiclelow-carbon society0202 electrical engineering electronic engineering information engineeringSustainable consumptionbattery applicationsElectrical and Electronic EngineeringEngineering (miscellaneous)0105 earth and related environmental sciencesRenewable Energy Sustainability and the Environmentbusiness.industryTand outlookEnvironmental economicsSolar energyRenewable energyVDP::Teknologi: 500ScalabilitySustainabilityElectricitybusinessEnergy (miscellaneous)
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High-Sensitivity Whispering Gallery Mode Humidity Sensor Based on Glycerol Microdroplet Volumetric Expansion

2021

We demonstrate a highly sensitive whispering gallery mode (WGM) relative humidity (RH) sensor based on a glycerol microdroplet. WGMs were excited using a 760 nm tunable semiconductor laser. We used free space coupling, which is effective when using a liquid resonator. A detailed analysis of different parameters influencing the sensor’s characteristics (sensitivity, hysteresis, resolution, stability, and temperature) is presented. The sensitivity of the sensor is one of the highest reported (2.85 nm/% RH in the range 50–70% RH with the resolution 1 × 10−4% RH). This type of humidity sensor has several advantages, such as high sensitivity, extended lifetime, good repeatability, and low cost, …

tunable laserMaterials science02 engineering and technologyglycerollcsh:Chemical technology01 natural sciencesBiochemistryArticleAnalytical Chemistrylaw.invention010309 opticsResonatorlaw0103 physical sciencesRelative humiditylcsh:TP1-1185Sensitivity (control systems)humidity sensorElectrical and Electronic EngineeringInstrumentationbusiness.industryHumidity021001 nanoscience & nanotechnologyLaserAtomic and Molecular Physics and OpticsSemiconductorOptoelectronicsWhispering-gallery wave0210 nano-technologybusinessmicrosphere resonatorTunable laserwhispering gallery modeSensors
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Patterning of supported gold monolayers via chemical lift-off lithography

2017

The supported monolayer of Au that accompanies alkanethiolate molecules removed by polymer stamps during chemical lift-off lithography is a scarcely studied hybrid material. We show that these Au–alkanethiolate layers on poly(dimethylsiloxane) (PDMS) are transparent, functional, hybrid interfaces that can be patterned over nanometer, micrometer, and millimeter length scales. Unlike other ultrathin Au films and nanoparticles, lifted-off Au–alkanethiolate thin films lack a measurable optical signature. We therefore devised fabrication, characterization, and simulation strategies by which to interrogate the nanoscale structure, chemical functionality, stoichiometry, and spectral signature of t…

two-dimensional materialMaterials scienceta221General Physics and AstronomyNanoparticlesoft lithographyNanotechnology02 engineering and technology010402 general chemistrylcsh:Chemical technology01 natural scienceslcsh:TechnologySoft lithographyFull Research PaperAnalytical ChemistrynanorakenteetmonolayerMonolayernanostructuresNanotechnologyGeneral Materials Sciencelcsh:TP1-1185Electrical and Electronic EngineeringThin filmlcsh:ScienceLithographyNanoscopic scaleta116chemical patterningta114lcsh:TPDMS stamphybrid material021001 nanoscience & nanotechnologylcsh:QC1-9990104 chemical sciencesNanosciencethin filmslcsh:Qohutkalvot0210 nano-technologyHybrid materialOther Chemical Scienceslcsh:PhysicsBeilstein Journal of Nanotechnology
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Compensation of Nonlinearity of Voltage and Current Instrument Transformers

2019

This paper aims at characterizing and improving the metrological performances of current and voltage instrument transformers (CTs and VTs) in harmonic measurements in the power system. A theoretical analysis is carried out to demonstrate that, due to the iron core nonlinearity, CT and VT output signal is distorted even when the input signal is a pure sine wave. Starting from this analysis, a new method for CT and VT characterization and compensation is proposed. In a first step, they are characterized in sinusoidal conditions and the harmonic phasors of the distorted output are measured; in the second step, these phasors are used to compensate the harmonic phasors measured in normal operati…

uncertainty.Materials sciencepower system measurementAcousticsHarmonics020208 electrical & electronic engineeringPhasorHarmonicinstrument transformers (ITs)02 engineering and technologypower qualitySignalCurrent transformerCompensation (engineering)Harmonic analysisSine waveDistortion0202 electrical engineering electronic engineering information engineeringHarmonicElectrical and Electronic EngineeringuncertaintySettore ING-INF/07 - Misure Elettriche E ElettronicheInstrumentationIEEE Transactions on Instrumentation and Measurement
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A Computationally Efficient Online/Offline Signature Scheme for Underwater Wireless Sensor Networks

2022

Underwater wireless sensor networks (UWSNs) have emerged as the most widely used wireless network infrastructure in many applications. Sensing nodes are frequently deployed in hostile aquatic environments in order to collect data on resources that are severely limited in terms of transmission time and bandwidth. Since underwater information is very sensitive and unique, the authentication of users is very important to access the data and information. UWSNs have unique communication and computation needs that are not met by the existing digital signature techniques. As a result, a lightweight signature scheme is required to meet the communication and computation requirements. In this researc…

underwater wireless sensor networks; certificateless online/offline signature; authentication schemeElectrical and Electronic EngineeringVDP::Teknologi: 500::Informasjons- og kommunikasjonsteknologi: 550BiochemistryInstrumentationAtomic and Molecular Physics and OpticsAnalytical ChemistrySensors
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