Search results for "BATTERY"

showing 10 items of 315 documents

Analysis and design of bi-directional DC-DC converters for ultracapacitors management in EVs

2018

The on-board energy-storage system of an electric vehicle (EV) should be able to collect large amounts of energy and to deal with fast load variations. The use of hybrid power sources as storage devices is an attractive solution, aiming at maximizing both energy and power density. The battery/ultracapacitors (UCs) combination promises to provide significant benefits. An accurate design of bi-directional converters, capable of proplery managing the charge/discharge of the UCs from/to a voltage bus, is essential. In this paper, a bi-directional DC-DC converter connected to a bank of UCs is described and the simulation results are given as well. The designed converter is a buck-boost type, abl…

Electric VehicleBattery (electricity)Supercapacitorbusiness.product_categorybusiness.industryComputer scienceEnergy management020209 energyElectrical engineeringBatteryDC-DC converter02 engineering and technologyConvertersPower (physics)UltracapacitorsEnergy ManagementElectric vehicle0202 electrical engineering electronic engineering information engineeringHybrid powerbusinessVoltage2018 Thirteenth International Conference on Ecological Vehicles and Renewable Energies (EVER)
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Switching Capacitors Transformerless Bidirectional DC-DC Converter

2020

This paper presents an innovative converter topology that better connects the needs of the battery pack and the electric motor towards the validation of an eco-sustainable electric mobility model. More in particular, the components of the proposed converter change their connection state during both the charging and discharging time of the battery, leading to a higher performance with respect to traditional step-down or step-up converters. The simulations carried out by means of the PLECS® environment have demonstrated the early feasibility of the proposed system.

Electric motorMobility modelComputer sciencebusiness.industry020209 energy020208 electrical & electronic engineeringElectrical engineeringBattery (vacuum tube)Topology (electrical circuits)02 engineering and technologyConvertersSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciInductor7. Clean energyBattery packlaw.inventionCapacitorDC DC converterlawHigh gain converter0202 electrical engineering electronic engineering information engineeringbusinessAutomotive converter
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Processes during preparation of lead/acid battery positive plates from tetrabasic lead sulfate (4BS) pastes

1993

Abstract Tthe processes studied during this investigation were paste mixing and curing. Tetrabasic lead sulfate 4BS pastes were prepared by solution and paste methods both from α-PbO and mill oxides, and the development of 4BS was carried out already during the paste mixing stage. the 4BS pastes were characterized by SEM, TEM, XRD and wet-chemical methods, and the results were compared with those obtained from the characterization of corresponding tribasic lead sulfate (3BS) pastes. The preparation method was found to be one dominating factor affecting both the morphology and structure of 4BS active masses. The selection of raw material gave an additional effect on the morphology. Additiona…

Electrode materialLead sulfateRenewable Energy Sustainability and the EnvironmentChemistryScanning electron microscopeInorganic chemistryEnergy Engineering and Power TechnologyRaw materialMicrographyPreparation methodChemical engineeringElectrical and Electronic EngineeringPhysical and Theoretical ChemistryLead–acid batteryCuring (chemistry)Journal of Power Sources
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Study, project and implementation of new metrics for distributed measurement system in medium voltage smart grid

2022

Energy Management SystemIEEE 1459-2010Arc faultPower qualityenergy storage system batteryUL 1699Bsmart gridBattery Management Systemrenewable energySettore ING-INF/07 - Misure Elettriche E Elettroniche
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Technical-economical evaluation for distributed storage applications. An Italian case study for a medium-scale public facility

2014

Time-of-use energy cost management involves the use of storage by customers to reduce their electricity bills. This can be accomplished by charging the storage during off-peak time periods, when electricity energy prices are low, and discharging it during times when on-peak energy prices are applied. This article addresses the question whether it is economically viable to install medium-scale distributed storage devices in the power system designed to lower the electricity cost for a customer-side application, assuming flexible electricity tariffs. The technical/economical evaluation is carried out referring to Lithium ion (Li-ion), Sodium Sulphur (NaS) and Vanadium Redox Battery (VRB) tech…

Energy storage load shifting Li-ion battery Technical-economical evaluationsEngineeringEnergy storageTechnical-economical evaluationsbusiness.industryElectrical engineeringVanadium redox batteryMedium scaleSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaElectric power systemStand-alone power systemLoad shiftingDistributed data storeCapital costLi-ion batteryElectricitybusinessProcess engineeringPublic Facility
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Fabrication of cobalt and cobalt oxide/graphene composites: towards high-performance anode materials for lithium ion batteries.

2010

Energy-Generating ResourcesFabricationMaterials scienceIndolesLithium vanadium phosphate batteryGeneral Chemical EngineeringInorganic chemistrychemistry.chemical_elementLithiumElectrochemistryMicroscopy Atomic Forcelaw.inventionMicroscopy Electron TransmissionlawOrganometallic CompoundsEnvironmental ChemistryGeneral Materials ScienceCobalt oxideElectrodesGrapheneOxidesCobaltCarbonAnodeGeneral EnergychemistryLithiumCobaltChemSusChem
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A microcontroller-based portable electrocardiograph recorder.

2004

We describe a low cost portable Holler design that can be implemented with off-the-shelf components. The recorder is battery powered and includes a graphical display and keyboard. The recorder is capable of acquiring up to 48 hours of continuous electrocardiogram data at a sample rate of up to 250 Hz.

EngineeringComputer Storage DevicesAmplifiers Electronicbusiness.industryBiomedical EngineeringBattery (vacuum tube)Information Storage and RetrievalContinuous electrocardiogramGraphical displayEquipment DesignEquipment Failure AnalysisMicrocontrollerUser-Computer InterfaceMicrocomputersEmbedded systemElectrocardiography AmbulatoryHumansDiagnosis Computer-AssistedbusinessComputer hardwareAnalog-Digital ConversionIEEE transactions on bio-medical engineering
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The Jiles Atherton Model for Description Of Hysteresis in Lithium Battery

2013

In this paper Jiles Atherton (JA) Model is used to obtain a mathematical model of the hysteresis in lithium battery. JA Model allows to describe both the hysteresis and the dynamical features of charging and discharging cycles in a lithium battery. The identification of the model is obtained by using a neural network technique developed for magnetic systems. The model is validated on some experimental tests on commercial batteries.

EngineeringHysteresisSettore ING-IND/11 - Fisica Tecnica AmbientaleArtificial neural networkENERGY STORAGE BATTERYHardware_GENERALbusiness.industryControl theoryJiles-Atherton modelControl engineeringSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettricibusinessLithium battery
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Battery storage systems for peak load shaving applications: Part 2: Economic feasibility and sensitivity analysis

2016

This paper is the second of a two-part series, aiming to evaluate the economic feasibility of electrochemical storage systems in peak load shaving applications. The battery energy storage system (BESS) is considered to be added to a private facility, with the aim of reducing the customer electricity bill. The BESS is charged during the night, when the electricity prices are the lowest and discharged during the daily hours, when the prices are the highest, contemporary achieving a leveling of the daily usage pattern. The economical evaluations are carried out considering four different electrochemical technologies: lithium-ion (li-ion), advanced lead-acid, sodium-sulphur (NaS) and flow batte…

EngineeringPresent valuebusiness.industryTotal cost020209 energytechnical-economical evaluationInternal rate of returnBattery energy storage02 engineering and technologyEnvironmental economicsInvestment (macroeconomics)Settore ING-IND/33 - Sistemi Elettrici Per L'Energiapeak load shavingIncentivePeak demanddemand charge0202 electrical engineering electronic engineering information engineeringForensic engineeringparametric analysisSensitivity (control systems)Electricitybusiness
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Stationary battery technologies in the U.S.: Development Trends and prospects

2017

Abstract In the last years, stationary battery systems started to attract the attention of stakeholders thanks to their unique ability to decouple power generation and load over time, providing the ancillary services necessary for the stability and the reliability of the electrical system. This is especially true in the presence of high levels of penetration of renewable energy technologies, like wind and solar photovoltaic (PV), because of increased fluctuations in the electricity produced by these renewable sources. Despite the growing interest in energy storage technologies, the academic literature has not completely assessed the development trends of this sector. In order to fill this g…

EngineeringRenewable Energy Sustainability and the Environmentbusiness.industryApplicationU.S.020209 energyPhotovoltaic systemLegislationBattery energy storage02 engineering and technologyProjectEnvironmental economicsEnergy storageRenewable energyDatabaseSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaElectric power systemElectricity generationRegulatory framework0202 electrical engineering electronic engineering information engineeringUse caseOperations managementElectricitybusiness
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