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MARC Record from marc_columbia

Record ID marc_columbia/Columbia-extract-20221130-032.mrc:216411940:6370
Source marc_columbia
Download Link /show-records/marc_columbia/Columbia-extract-20221130-032.mrc:216411940:6370?format=raw

LEADER: 06370cam a2200625 i 4500
001 15973500
005 20220528224350.0
006 m o d
007 cr cn|||||||||
008 180614t20172017maua ob 001 0 eng d
035 $a(OCoLC)on1039931251
035 $a(NNC)15973500
040 $aYDX$beng$erda$epn$cYDX$dOCLCO$dEBLCP$dSTF$dN$T$dOCLCF$dCUV$dJBG$dOCLCQ$dOCLCO$dG3B$dIGB$dAU@$dOCLCQ$dUKAHL$dAUW$dOCLCQ$dIEEEE$dOCLCQ$dOCLCO
019 $a1027676779$a1235826067
020 $a9781630814731$q(electronic bk.)
020 $a1630814733$q(electronic bk.)
020 $z9781630810511
020 $z1630810517
035 $a(OCoLC)1039931251$z(OCoLC)1027676779$z(OCoLC)1235826067
050 4 $aTL220$b.B39 2017eb
072 7 $aTEC$x009000$2bisacsh
082 04 $a629.22/93$223
049 $aZCUA
100 1 $aBayram, İslam Şafak,$eauthor.
245 10 $aPlug-in electric vehicle grid integration /$cİslam Şafak Bayram, Ali Tajer.
264 1 $aNorwood, MA :$bArtech House,$c[2017]
264 4 $c©2017
300 $a1 online resource :$billustrations
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
490 1 $aArtech House power engineering series
588 0 $aPrint version record.
504 $aIncludes bibliographical references and index.
505 0 $aPlug-in Electric Vehicle Grid Integration; Contents; Preface; Introduction to Plug-in Electric Vehicles; Introduction; Environmental Aspects; Cost Savings; Energy Independence and Security; History of Electric Transportation; Early Days; Decline of Electric Vehicles; Electric Vehicle Models and Specifications; Battery Electric Vehicles; Plug-in Hybrid Electric Vehicles; Hybrid Electric Vehicles; Fuel-Cell Electric Vehicles; Fuel Efficiency Measures; Comparison of Carbon Emissions; Plug-in Electric Vehicle Sales; Chapter Summary; Enabling Technologies; Battery Technology; Lithium-ion Batteries.
505 8 $aBasic Battery TerminologyDesign Criteria; Battery Management Systems; Plug-in Electric Vehicle Drivetrain Architectures; Electric Vehicle Service Equipment; Battery Charger Technology; Charging Rates and Options; Wireless Charging; Charging Station Deployment; Chapter Summary; Roadblocks to PEV Integration; Impacts of PEV Charging; Distribution Network; Impacts on Generation Portfolio; Transmission Network; Network of Charging Stations; High Acquisition Cost; Chapter Summary; PEV Cost Models; Battery Degradation Cost; PEV Battery Modeling; Modeling Approach I: NREL Model; Modeling Approach II.
505 8 $aModeling Approach IIIElectricity Cost; All-in-Rate; Time-of-Use Rates; Critical-Peak Pricing; Real-Time Pricing; Inclining Block Rates; Case Study; Chapter Summary; Economics of Charging Services; Introduction; Charging for Services; Consumer's Perspective; Service Provider's Perspective; Socially Optimal Pricing; Other Pricing Constraints; Finite Capacity; Auction-based Pricing; Untruthful Behavior; Teletraffic Theory; Congestion and Its Effect on Pricing; Network Externalities; Demand Forecasting; Chapter Summary; Capacity Planning for Large-Scale PEV Charging Stations; Introduction.
505 8 $aSystem DescriptionStorage Capacity Analysis for Single-class PEVs; Energy Storage Access Dynamics; Analyzing Distributions; Single-charger Technology with One PEV; Single-charger Technology with Multiple PEVs; Storage Capacity Analysis for Multiclass PEVs; Effective Demand; Numerical Examples; Single-class Customers; Multi-class Customers; Chapter Summary; Capacity Planning for Small-Scale PEV Charging Stations; Introduction; System Description; Stochastic Model; Toy Example; Profit Model; Performance Evaluation; Stations with Competing Energy Storage Technologies.
505 8 $aSystem Metamodeling ApproachChapter Summary; PEV Demand Control; Introduction; Load Management for Fast-Charging Stations; Load Management at a Fast-Charging Station; Numerical Evaluation; Load Management at Multiple Charging Technology; System Model; Problem Formulation; Global Problem; Local Problems; Connection between Global and Local Problems; Computing LoLPs; Numerical Evaluation; Chapter Summary; Optimal Service Rates; Introduction; Competing Performance Measures for PEV Charging; Optimal Individual Battery Charging; Numerical Evaluation; Charging Control at a Fast-Charging Station.
520 3 $aThis authoritative new resource provides a comprehensive introduction to plug-in electric vehicles (PEVs), including critical discussions on energy storage and converter technology. The architecture and models for sustainable charging infrastructures and capacity planning of small scale fast charging stations are presented. This book considers PEVs as mobile storage units and explains how PEVS can provide services to the grid. Enabling technologies are explored, including energy storage, converter, and charger technologies for home and park charging. The adoption of EV is discussed and examples are given from the individual battery level to the city level.n nThis book provides guidance on how to build and design sustainable transportation systems. Optimal arrival rates, optimal service rates, facility location problems, load balancing, and demand forecasts are covered in this book. Time-saving MATLAB code and background tables are included in this resource to help engineers with their projects in the field.$cPublisher abstract.
650 0 $aElectric vehicles.
650 0 $aBattery charging stations (Electric vehicles)
650 6 $aVéhicules électriques.
650 6 $aBornes de recharge.
650 7 $aelectric vehicles.$2aat
650 7 $arecharging stations.$2aat
650 7 $aTECHNOLOGY & ENGINEERING$xEngineering (General)$2bisacsh
650 7 $aBattery charging stations (Electric vehicles)$2fast$0(OCoLC)fst01892852
650 7 $aElectric vehicles.$2fast$0(OCoLC)fst00906127
655 4 $aElectronic books.
700 1 $aTajer, Ali,$eauthor.
776 08 $iPrint version:$aBayram, İslam Şafak.$tPlug-in electric vehicle grid integration.$dNorwood, MA : Artech House, [2017]$z1630810517$w(OCoLC)1000593208
830 0 $aArtech House power engineering series.
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio15973500$zACADEMIC - Sustainable Energy & Development
852 8 $blweb$hEBOOKS