Optimization of soybiodiesel combustion in a modern diesel engine.docx
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Optimization of soybiodiesel combustion in a modern diesel engine.docx
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Optimizationofsoybiodieselcombustioninamoderndieselengine
Themaingoalistoenhancetheoverallperformancebyachievingalowsensitivitytodisturbancesandminimalovershootundervariableoperatingconditions.Finally,theresultshavebeenverifiedbyanexperimentalWECSlaboratoryprototype.
ArticleOutline
1.Introduction
2.WECSmodeling
2.1.WTmodeling
2.2.Variablespeedcontrolreference
2.3.PMSGmodeling
3.Controlstrategy
3.1.TuningthePIs
4.Experimentalresults
4.1.Systemdescription
4.2.Experimentalresults
5.Conclusion
Acknowledgements
AppendixA.Appendix
AppendixB.Appendix
References
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158Modellingoftheauto-ignitionangleindieselHCCIenginesthroughD-optimaldesign?
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OriginalResearchArticle
Fuel,Volume89,Issue9,September2010,Pages2561-2568
J.J.Hern¨¢ndez,J.Sanz-Argent,J.M.Carot,J.M.Jabaloyes
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159Twosecureandenergy-savingspontaneousad-hocprotocolforwirelessmeshclientnetworks?
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OriginalResearchArticle
JournalofNetworkandComputerApplications,Volume34,Issue2,March2011,Pages492-505
RaquelLacuesta,JaimeLloret,MiguelGarcia,LourdesPe?
alver
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AbstractAbstract|Figures/TablesFigures/Tables|ReferencesReferences
Abstract
Wecanfindmanycaseswhereaspontaneouswirelessad-hocnetworkmustbebuiltforalimitedperiodoftimeinawirelessmeshnetwork:
meetings,conferences,etc.Oneofthemainaspectsinaspontaneousnetworkistoprovidesecuritymechanismstotheusers.Confidentially,integrity,authentication,availabilityandno-repudiationshouldbeprovidedforalltheusersinthenetworkandtheinformationshouldtravelcipheredthroughthenetwork.Thispapershowstwosecurespontaneouswirelessad-hocnetworkprotocolsforwirelessmeshclientsthatarebasedonthecomputationalcosts:
theweakandthestrongone.Theyarebasedonthetrustoftheusersandguaranteeasecureprotocolbetweentheusersandthemeshrouters.Bothprotocolsprovidenodeauthenticity,intermediatenodeauthenticity,integritychecking,randomchecking,verificationdistributionanderroneouspacketselimination(beforetheyarrivetothedestination).Theprotocolprocedure,itsmessagesanddevelopmentareexplainedindetail.Finally,wewillcomparetheirenergyconsumptionwithothersecureprotocols.Thecomparisonwillprovetheirbenefits.
ArticleOutline
1.Introduction
2.Relatedwork
2.1.Asymmetriccryptography
2.2.Symmetriccryptography
2.3.Hybridsolutions
3.Securityprotocolsanalysis
3.1.Cryptographicoperationsinsecureroutingprotocols
3.2.Analysisoftheenergyconsumed
4.Securespontaneousprotocol
4.1.Weakproposal
4.2.Strongproposal
5.Protocolprocedure
5.1.Nodeproceduretorequestcertificates
5.2.Nodeproceduretorequestcertificates
5.3.Authenticationrequestprocedure
5.4.Authenticationprocedure
5.5.Certificaterequestprocedure
5.6.Certificateprocedure
6.Deploymentandenergymeasurements
6.1.Energymeasurements
7.Conclusion
References
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160Prospectofwind¨CPV-batteryhybridpowersystemasanalternativetogridextensioninBangladesh?
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OriginalResearchArticle
Energy,Volume35,Issue7,July2010,Pages3040-3047
SanjoyKumarNandi,HimangshuRanjanGhosh
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AbstractAbstract|Figures/TablesFigures/Tables|ReferencesReferences
Abstract
Apre-feasibilityofwind-PV-batteryhybridsystemhasbeenperformedforasmallcommunityintheeast-southernpartofBangladesh.Solarradiationresourceshavebeenassessedfromothermeteorologicalparameterslikesunshinedurationandcloudcoverasmeasuredradiationdatawerenotavailableatthesite.ThepredictedmonthlyaverageddailyglobalradiationoverChittagongis4.36?
kWh/m2/day.Measuredwindspeedatthesitevariesfrom3?
m/sto5?
m/s.Forfewmonthsandhoursthespeedisbelowthecutinspeedsoftheavailableturbinesinmarket.Thehybridsystemanalysishasshowedthatforasmallcommunityconsuming53,317?
kWh/yearthecostenergyis0.47USD/kWhwith10%annualcapacityofshortageandproduces89,151?
kWh/yearinwhich53%electricitycomesfromwindandtheremainingfromsolarenergy.Thesensitivityanalysisshowedthatthehybridsystemforthecommunityiscompatiblewiththe8?
km¨C12?
kmgridextensiondependingonsmallvariationofsolarradiationandwindspeedoverthedistrictwhereastheproposedsiteismoreawayfromtheupperlimit.Suchahybridsystemwillreduceabout25?
tCO2/yrgreenhousegases(GHG)emissioninthelocalatmosphere.
ArticleOutline
Nomenclature
1.Introduction
2.Renewableenergysourcesavailability
2.1.Windresource
2.2.Solarresource
3.Electricloads
4.Simulationtool
5.Hybridpowersystemcomponents
6.Economics,constrainsandspinningparameters
7.Results
7.1.Optimizationresults
7.2.Comparisonwithgrid
7.3.Sensitivityanalysis
7.4.Pollutantsemission
8.Conclusion
Acknowledgements
References
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161Fuelcell/batterypassivehybridpowersourceforelectricpowertrains?
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OriginalResearchArticle
JournalofPowerSources,Volume196,Issue14,15July2011,Pages5867-5872
J¨¦r?
meBernard,MarcelHofer,UweHannesen,AntoineToth,AkinoriTsukada,F¨¦lixN.B¨¹chi,PhilippDietrich
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AbstractAbstract|Figures/TablesFigures/Tables|ReferencesReferences
Abstract
Theconceptofpassivehybrid,i.e.thedirectelectricalcouplingbetweenafuelcellsystemandabatterywithoutusingapowerconverter,ispresentedasafeasiblesolutionforpowertrainapplications.AstherearenoDC/DCconverters,thepassivehybridisacheapandsimplesolutionandthepowerlossesintheelectronichardwareareeliminated.Insuchapowertraintopologywherethetwodevicesalwayshavethesamevoltage,theactivepowersharingbetweenthetwoenergysourcescannotbedoneintheconventionalway.Asanalternative,controlofthefuelcellpowerbyadjustingitsoperatingpressureiselaborated.OnlypureH2/O2fuelcellsystemsareconsideredinthisapproach.Simulationandhardwareintheloop(HIL)resultsforthepowertrainshowthatthishybridpowersourceisabletosatisfythepowerdemandofanelectricvehiclewhilesustainingthebatterystateofcharge.
ArticleOutline
1.Introduction
2.Fuelcellsystem
3.Passivehybridconcept
3.1.Fuelcellmodel
3.2.Batterymodel
3.3.Passivehybridpowersource
4.Powertrainsimulation
4.1.Powertrainparameters
4.2.Powermanagementstrategy
4.3.Simulationresults
5.Advantagesanddrawbacks
6.Conclusion
Acknowledgements
References
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Highlights
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Fuelcellhybridvehiclesareunderconsideration.?
Weconsiderthedirectelectricalcouplingofafuelcellandabattery.?
Thefuelcellpowerisactivelycontrolledbyadjustingitsoperatingpressure.?
ThepowerdemandofavehicleisfulfilledwhilesustainingthebatterySOC.?
WithoutDC/DCconverter,thehybridpowertrainbecomessimplerandcheaper.
162Whydomanyresource-richcountrieshavenegativegenuinesaving?
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Anticipationofbettertimesorrapaciousrentseeking?
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OriginalResearchArticle
ResourceandEnergyEconomics,Volume32,Issue1,January2010,Pages28-44
FrederickvanderPloeg
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AbstractAbstract|Figures/TablesFigures/Tables|ReferencesReferences
Abstract
WeinvestigatetheHartwickruleforsavingofanationnecessarytosustainaconstantlevelofprivateconsumptionforasmallopeneconomywithanexhaustiblestockofnaturalresources.Theamountbywhichacountrysavesandinvestslessthanthemarginalresourcerentsequalstheexpectedcapitalgainsonreservesofnaturalresourcesplustheexpectedincreaseininterestincomeonnetforeignassetsplustheexpectedfallinthecostofresourceextractionduetoexpectedimprovementsinextractiontechnology.Effectively,depletionisthenpostponeduntilbettertimes.Thissuggeststhatitisnotnecessarilysub-optimalforresource-richcountriestohavenegativegenuinesaving.However,incountrieswithdifferentgroupswithimperfectlydefinedpropertyrightsonnaturalresources,politicaldistortionsinducefasterresourcedepletionthansuggestedbytheHotellingrule.Fractionalisedsocietieswithimperfectpropertyrightsbuildupmoreforeignassetsthantheirmarginalresourcerents,butinthelongrunaccumulatelessforeignassetsthanhomogenoussocieties.Hence,suchsocietiesendupwithlowersustainableconsumptionandareworseoff,especiallyifseepageisstrong,thenumberofrivalgroupsislargeandthecountrydoesnotenjoymuchmonopolypowerontheresourcemarket.Genuinesavingiszeroinsuchsocieties.However,WorldBankgenuinesavingfiguresbasedonmarketratherthanaccountingpriceswillbenegative,albeitlesssoinmorefractionalisedsocietieswithlesssecurepropertyrights.
ArticleOutline
1.Introduction
2.Negativegenuinesavinginanticipationofbettertimes
3.NormativeunderpinningoftheHartwickrule
4.Genuinesavingandrapaciousrentseeking
4.1.Optimalityconditionsforthedynamiccommon-poolproblem
4.2.PoliticaldistortionsintheHotellingrule
4.3.Fractionalisation,sovereignwealthfundsandsustainableconsumption
4.4.Zerogenuinesavingevenwithseepageorimperfectpropertyrights
4.5.Summingup
5.Concludingremarks
References
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163Understandingtherelationshipbe
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