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2014 IEEE Inteational Conference on Advanced Communication Control and Computing Technologies (lCACCCT) Performance Analysis of a Two-Diode model ofPV cell forPV based generation in MATLAB A.V. Pavan Kumar i ,Alivelu M. Parimi 2 ,K. Vma Rao 3 i Research Scholar, 2 Assistant Professor, 3 Professor i , 2 Dept. of EE,BITS-Pilani, Hyderabad Campus, Hyderabad, AP, India 3 R V College of Engineering, Mysore Road, Bangalore, Kaataka, India. i [email protected], 2 [email protected].in, 3 druma[email protected] Abstract-The increase in concern for carbon emission and reduction in natural resources for conventional power generation, the renewable energy based generation such as Wind, Photovoltaic (PV), and Fuel cell has gained importance. Out of which the PV based generation has gained significance due to availability of abundant sunlight. As the Solar power conversion is a low efficient conversion process, accurate and reliable, modeling of solar cell is important. Due to the non-linear nature of diode based PV model, the accurate design of PV cell is a difficult task. A built-in model of PV cell is available in Simscape, Simelectronics library, Matlab. The equivalent circuit parameters have to be computed from data sheet and incorporated into the model. However it acts as a stiff source when implemented with a MPPT controller. Henceforth, to overcome this drawback, in this paper a two-diode model of PV cell is implemented in Matlab Simulink with reduced four required parameters along with similar configuration of the built-in model. This model allows incorporation of MPPT controller. The I-V and P-V characteristics of these two models are investigated under different insolation levels. A PV based generation system feeding a DC load is designed and investigated using these two models and further implemented with MPPT based on P&O technique. Keywords: Two-diode model, PV modeling, PV power generation, MABISimulink, Solar insolation. I. INTRODUCTION The increase in the use of conventional energy sources causes the possibility of their enervation and increase in carbon emission. The global energy consumption is amassed exponentially. The need of clean energy generation with less environmental impact is required. The renewable energy sources such as solar energy, Wind energy, Fuel cell, Geo- thermal energy, Tidal energy are gaining importance. Among these renewable energy sources, despite of high installation cost, the energy produced om the photovoltaic is currently regarded as the prerequisite sustainable resources for both standalone and grid connected system, since it offers zero input el cost, rich and clean energy. Nonetheless, this kind of alteating power generation causes problems in the conventional electrical system where it will be connected to, because of the dearth of control on the active and reactive power generation. In order to overcome the shortcomings, the potential of PV power generation should be investigated by selecting appropriate PV module. Numerous studies have been absorbed over the demonstration of PV module characteristics ISBN No. 978-1-4799-3914-5/14/$3l.00 ©20 14 IEEE and simulated for better understanding of their performances. On the other hand, choosing the right controlling technique is needed in order to achieve an efficient renewable energy system [1-3]. The output power of a PV module is related to ambient temperature and solar irradiation, which are the major components of the mathematical model of PV cell that affect the accuracy in the simulation. Among the various mathematical models of PV cell proposed in the literature, simple model is a single diode model of PV cell consisting of short circuit current (lse), open circuit voltage (Voe) and the diode ideality factor (N). Various researchers have proposed different modified mathematical models of PV cell in order to produce accurate Cuent-Voltage (I-V), Power-Voltage (P-V) characteristics similar to the manufacturer PV panel [4-7]. Out of which a two-diode model of PV cell is considered in this paper. The behavior of the PV cell is investigated under different solar insolation levels, by calculating the values of Series resistance (Rs), Shunt resistance (Rp) by iteration method to study the performance of the PV cell. A Solar cell block having a two-diode model configuration is also inbuilt in Simscape, Simelectronics library in Matlab. The two PV cell models based on diodes and its configuration (in Simscape) are considered and by selecting optimum values, an accurate output similar to the industrial manufacturer PV data sheet is produced and compared. Later the PV based generation is simulated using both the configurations of PV models to form one model with four parameters. This PV generation system with Maximum Power Point Tracking (MPPT) controller based on Perturb and Observe (P&O) algoritlun feeding a DC load is analyzed. In this context a mathematical model of two diode PV cell is discussed in section II. Section III discussed the PV cell model in Simscape. The characteristics of these models are compared with manufacture data sheet in section IV. Section V integrates these two models for PV based generation system and implemented with MPPT controller. Section VI gives shows the effectiveness of this system connected to a DC load. II. MA THEMA TICAL MODELING OF TWO-DIODE PV CELL In order to simulate the real behavior of a two-diode PV cell in MATLAB / Simulink mathematical model need to be developed. An electrical equivalent circuit is essential to analyze the performance of PV cell. The equivalent circuit of two-diode PV cell is as shown in Fig. 1 consisting of Photo- 68

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2014 IEEE Interational Conference on Advanced Communication Control and Computing Technologies(lCACCCT) Performance AnalysisofaTwo-DiodemodelofPV cellforPVbasedgenerationinMA TLAB A.V.Pavan Kumari,Alivelu M.Parimi2,K.Vma Rao3 iResearchScholar, 2 Assistant Professor, 3Professor i,2Dept. of EE,BITS-Pilani, Hyderabad Campus,Hyderabad,AP, India 3R V College of Engineering, Mysore Road, Bangalore, Karataka, India. [email protected],[email protected],[email protected] Abstract-Theincreaseinconcernforcarbonemissionand reductioninnaturalresourcesforconventionalpower generation,therenewableenergybasedgenerationsuchas Wind, Photovoltaic(PV),andFuelcellhasgainedimportance.Outof whichthePVbasedgenerationhasgainedsignifcancedueto availabilityofabundantsunlight.AstheSolarpowerconversion isalowefcientconversionprocess,accurateandreliable, modelingofsolarcellisimportant.Duetothenon-linearnature ofdiodebasedPVmodel,theaccuratedesignofPVcellisa difculttask.Abuilt-inmodelof PVcellisavailableinSimscape, Simelectronicslibrary,Matlab.Theequivalentcircuit parametershavetobecomputedfromdatasheetand incorporatedintothemodel.Howeveritactsasastiffsource whenimplementedwithaMPPTcontroller.Henceforth,to overcomethisdrawback,inthispaperatwo-diodemodelofPV cellisimplementedinMatlabSimulinkwithreducedfour requiredparametersalongwithsimilarconfgurationofthe built-inmodel.ThismodelallowsincorporationofMPPT controller.TheI-VandP-Vcharacteristicsofthesetwomodels areinvestigatedunderdifferentinsolationlevels.APVbased generation systemfeedingaDCloadisdesignedandinvestigated usingthesetwomodelsandfurtherimplementedwithMPPT basedonP&Otechnique. Keywords:Two-diodemodel,1modeling,1powergeneration, MATBISimulink,Solar insolation. I.INTRODUCTION Theincreaseintheuseofconventionalenergysources causesthepossibilityoftheirenervationandincreasein carbonemission.Theglobalenergyconsumptionisamassed exponentially. Theneedofcleanenergygenerationwithless environmentalimpactisrequired.Therenewableenergy sourcessuchassolarenergy,Windenergy,Fuelcell,Geothermal energy, Tidalenergyaregainingimportance.Among theserenewableenergysources,despiteofhighinstallation cost,theenergyproducedfomthephotovoltaiciscurrently regardedastheprerequ isitesustainableresourcesforboth standaloneandgridconnectedsystem,sinceitoferszero inputfelcost,richandcleanenergy.Nonetheless,thiskind ofalteratingpowergenerationcausesproblemsinthe conventionalelectricalsystemwhereitwillbeconnectedto, becauseofthedearthofcontrolontheactiveandreactive powergeneration.Inordertoovercometheshortcomings,the potentialofPVpowergenerationshouldbeinvestigatedby selecting appropriate PV module. Numerous studies havebeen absorbedover thedemonstrationof PVmodulecharacteristics ISBN No. 978-1-4799-3914-5/14/$3l.002014 IEEE andsimulatedforbetter understandingoftheirperformances. Ontheotherhand, choosing theright controlling techniqueis neededinordertoachieveaneffcientrenewableenergy system[1-3]. TheoutputpowerofaPVmoduleisrelatedtoambient temperatureandsolarirradiation,whicharethemajor componentsofthemathematicalmodelof PVcellthataffect theaccuracyinthesimulation.Amongthevarious mathematicalmodelsofPVcellproposedintheliterature, simplemodelisasinglediodemodelof PVcellconsistingof shortcircuitcurrent(lse) ,opencircuitvoltage(Voe)andthe diodeidealityfactor(N).Variousresearchershaveproposed differentmodifedmathematical modelsof PVcellin order to produceaccurateCurent-Voltage(I-V), Power-Voltage(P-V) characteristics similar to the manufacturer PVpanel[4-7].Out ofwhichatwo-diodemodelof PVcellisconsideredinthis paper.ThebehaviorofthePVcellisinvestigatedunder differentsolarinsolationlevels,bycalculatingthevaluesof Seriesresistance(Rs),Shuntresistance(Rp)byiteration methodtostudytheperformanceofthe PVcell.ASolarcell blockhavingatwo-diodemodelconfgurationisalsoinbuilt inSimscape,Simelectronics libraryin Matlab. ThetwoPVcellmodelsbasedondiodesandits confguration(inSimscape)areconsideredandbyselecting optimumvalues,anaccurateoutputsimilartotheindustrial manufacturer PVdatasheetisproducedandcompared.Later thePVbasedgenerationissimulatedusingboththe confgurationsofPVmodelstoformonemodelwithfour parameters. This PV generationsystem withMaximum Power PointTracking(MPPT)controllerbasedonPerturband Observe(P&O)algoritlun feedingaDCloadis analyzed.In thiscontextamathematicalmodeloftwodiode PVcellis discussed in section II. Section III discussed the PV cell model inSimscape. The characteristics of these models are compared withmanufacturedatasheetinsectionIV.SectionV integratesthesetwomodelsfor PVbasedgenerationsystem andimplementedwithMPPTcontroller.SectionVIgives shows the efectiveness of this system connected to a DC load. II.MATHEMATICALMODELINGOFTWO-DIODE PV CELL Inordertosimulatetherealbehaviorofatwo-diode PV cellinMATLAB/Simulinkmathematicalmodelneedtobe developed.Anelectricalequivalentcircuitisessentialto analyzetheperformanceof PVcell. Theequivalentcircu itof two-diode PVcellisasshowninFig.1consistingof Photo-68 2014 IEEE Interational Conference on Advanced Communication Control and Computing Technologies(lCACCCT) generatedcurrent(lph),twodiodeswithdiodecurrents(ld\, I__). SeriesResistance(Rs),ShuntResistance(Rp),output voltage (V) and PV curent (I or Ipv). Fig.. EquivalentCircuitof Two-diode model of PV cell ThegraphicalinterfaceoftheMATLAB,Simulinkhelps ustodevelopandinvestigatethemathematicalmodelofthe two-diode PV cell whichcannot be interpreted by looking into manufacturerdatasheet.Thiselectricalequivalentcircuitof PVcellisknowntocompriseimprovedaccuracyatlow irradiationlevelswhichhelpsusformoreaccurateprediction ofPVsystemperformanceunderdifferentenvironmental conditions when compared to manufacturer datasheet[8, 9]. In Fig. 1, which showsthe equivalent circuit oftwo diode model of PVcell the relation between output current and voltage can beobtainedbyapplyingKirchhoffscurrentlaw(KCL)and govered by (1) !'!j!|!!S (1) Where, I,I_are the currents of the diodes D"D_. +!11_!_(2) Equation(2)istheelementary PVcellmodelwhichdoes notrepresentthepracticalI-Vcharacteristicsofthe PVcell. Practical PV module comprisesof different elements that need tobe added into theelementary(2)suchasRs, Rp. Theoutput current of PV cell (2) is rewritten as(3) [ ( 1! `1J][ ( 1! `1J] !+!!j 1!_1`j` `_`!`!_!_where, k Boltzmann constant l.38` _ J/K, Q charge on electron 1.602 ` 10C, (3) 1 Photocurrent,fnctionofirradiationleveland junction temperature, A, !!_ Reverse Saturation current of diodes D\, D2, A, 1 Reference cell operating temperature, 20C ! Cell output voltage, V, . number of PV cells connected in series, N], N_ Ideality factors of diodes D],D_. The output curent of the PV cell represented by(3) is that ofsingle PVcell.Inordertoachievedesiredlevelofoutput voltageandcurrentthePVcellareconnectedinseriesand parallel.Ifthe PVmodulesconsistofNpparallelconnected cells, the output current of the PV module is expressed as: !','/,!' ^ .'(4) InordertosimulatethePVcellbehaviorsimilartothe practical PV cell the unknown parameters in(3)i.e., R., Rp are calculated by iteration[10]. The computed valuesof Rs and Rp areusedtomakethemaximumpointoftheP-Vcurve simulated to coincide with themaximumpoint of the practical P-V curve of the PV module takenfom datasheet. This can be achievedbyiterativelyincreasingthevaluesofRsand simultaneouslycalculatingthe value of Rp. Computation of the iterativevalueswillterminatewhenthecalculatedpower P ____ using these values equals the reference maximum power P ___ taken fom the datasheet. III.PV CELL MODEL INSIMSCAPE,SIMELECTRONICS The solar cellblock intheSimelectronicslibraryshown in Fig. 2ismodeledonthe basis oftwodiodeequivalentcircuit of PVcellasshowninFig.1.Theoutputcurrentofthe PV cell is given by (3). COHI LGFig.2.Solarcell block in Simscape/Simelectronics library Thesolarcellblockhasthreedifferentconfgurations inbuilt(a)BySICCurrentandOIC Voltage, 5paameter,(b) Byequivalentcircuitparameters,5parameter,(c)By equivalentcircuitparameters,8parameter.Outofthethree confgurations'byequivalentcircuitparameters,8parameter' is selected whichis similarto that of equation based two-diode model of PV cell discussed in section II. IV.I-V & P-V CHARACTERISTICS OF PV CELL MODELS COMPAREDWITH MANUFACTURER DATA SHEET SharpNU-E245(J5)solarpanelisselectedforthe MATLABsimulation.Themodelconsistsof50cellsof Silicon nitridemulti-crystalline silicon cells.Fig. 3 shows the I-V and P-V characteristics taken fom the data sheet [11].The electrical parameters of theSX 3200are shown in Table. I. cLrS. jce1 ^ \