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    "title": "Droop Control With Improved Disturbance Adaption for FACTS Based PV System With Two Power Conversion Stages",
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            "value": "Droop control has commonly been used with distributed generators for relating their terminal parameters with power generation. The generators have also been assumed to have enough capacities for supplying the required power. This is however not always true, especially with renewable sources with no or insufficient storage for cushioning climatic changes. In addition, most droop-controlled literatures have assumed a single dc-ac inverter with its input dc source fixed. Front-end dc-dc converter added to a two-stage photovoltaic (PV) system has therefore usually been ignored. To address these unresolved issues, an improved droop scheme for a two-stage PV system has been developed in the paper. The Proposed scheme uses the STATCOM control structure in both grid-connected and islanded modes, which together with properly tuned synchronizers, and mitigates the harmonics, by providing Reactive power and Load current Subsequently the proposed scheme adapts well with internal PV and external grid fluctuations, and is hence more precise with its tracking, as compared with the traditional droop scheme. Simulation and experimental results are obtained using MATLAB Simulink.",
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            {
                "key": "ref1",
                "unstructured": "iM. iPereira, iD. iLimon, iD. iMunoz ide ila iPena, iL. iValverde, iand iT. iAlamo, i“Periodic ieconomic icontrol iof ia inonisolatedmicrogrid,” iIEEE iTrans. iInd. iElectron., ivol. i62, ino. i8, ipp. i5247–5255, iAug. i2015. i Journal iof iScience iand iTechnology i ISSN: i2456-5660 iVolume i4, iIssue i4, iJuly-August i2019, iPP i31-38 i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i iwww.jst.org.in i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i i38 i| iPage"
            },
            {
                "key": "ref2",
                "unstructured": "iQ. iN. iTrinh, iand iH. iH. iLee, i“An ienhanced igrid icurrent icompensator ifor igrid-connected idistributed igeneration iunder inonlinear iloads iand igrid ivoltage idistortions,” iIEEE iTrans. iInd. iElectron., ivol. i61, ino. i12, ipp. i6528–6537, iDec. i2014. i"
            },
            {
                "key": "ref3",
                "unstructured": "iS. iD. iReddy, iM. iP. iSelvan, iand iS. iMoorthi, i“Design, ioperation, iand icontrol iof iS3 iinverter ifor isingle-phase imicrogrid iapplications,” iIEEE iTrans. iInd. iElectron., ivol. i62, ino. i9, ipp. i5569–5577, iSep. i i2015. i"
            },
            {
                "key": "ref4",
                "unstructured": "iL. iHadjidemetriou, iE. iKyriakides, iand iF. iBlaabjerg, i“A irobust isynchronization ito ienhance ithe ipower iquality iof irenewable ienergy isystems,” iIEEE iTrans. iInd. iElectron., ivol. i62, ino. i8, ipp. i4858–4868, iAug. i i2015. i"
            },
            {
                "key": "ref5",
                "unstructured": "iR. iA. iMastromauro, iM. iLiserre, iT. iKerekes, iand iA. iDell’Aquila, i“A isingle-phase ivoltage-controlled igrid-connected iphotovoltaic isystem iwith ipower iquality iconditioner ifunctionality,” iIEEE iTrans. iInd. iElectron., ivol. i56, ino. i11, ipp. i4436–4444, iNov. i2009"
            },
            {
                "key": "ref6",
                "unstructured": "iJ. iKwon, iS. iYoon, iand iS. iChoi, i“Indirect icurrent icontrol ifor iseamless itransfer iof ithree-phase iutility iinteractive iinverters,” iIEEE iTrans. iPower iElectron., ivol. i27, ino. i2, ipp. i773–781, iFeb. i2012. i"
            },
            {
                "key": "ref7",
                "unstructured": "iS. iYoon, iH. iOh, iand iS. iChoi, i“Controller idesign iand iimplementation iof iIndirect icurrent icontrol ibased iutility-interactive iinverter isystem,” iIEEE iTrans. iPower iElectron., ivol. i28, ino. i1, ipp. i26–30, iJan. i2013.. i"
            },
            {
                "key": "ref8",
                "unstructured": "iZ. iLiu iand iJ. iJ. iLiu, i“Indirect icurrent icontrol ibased iseamless itransfer iof ithree-phase iinverter iin idistributed igeneration,” iIEEE iTrans. iPower iElectron., ivol. i29, ino. i7, ipp. i3368–3383, iJul. i2014. i"
            },
            {
                "key": "ref9",
                "unstructured": "iA. iMicallef, iM. iApap, iC. iSpiteri-Staines, iJ. iM. iGuerrero, iand iJ. iC. iVasquez, i“Reactive ipower isharing iand ivoltage iharmonic idistortion icompensation iof idroop icontrolled isingle iphase iislanded imicrogrids,” iIEEE iTrans. iSmart iGrid, ivol. i5, ino. i3, ipp. i1149–1158, iNov. i2014. i"
            },
            {
                "key": "ref10",
                "unstructured": "iI. iU. iNutkani, iP. iC. iLoh, iP. iWang, iand iF. iBlaabjerg, i“Autonomous idroop ischeme iwith ireduced igeneration icost,” iIEEE iTrans. iInd. iElectron., ivol. i61, ino. i12, ipp. i6803–6811, iDec. i2014. i"
            },
            {
                "key": "ref11",
                "unstructured": "iJ. iW. iHe, iY. iW. iLi, iand iF. iBlaabjerg, i“An iEnhanced iislanding imicrogrid ireactive ipower, iimbalance ipower, iand iharmonic ipower isharing ischeme,” iIEEE iTrans. iPower iElectron., ivol. i30, ino. i6, ipp. i3389–3401, iJun. i2015. i"
            },
            {
                "key": "ref12",
                "unstructured": "iJ. iC. iVasquez, iJ. iM. iGuerrero, iM. iSavaghebi, iJ. iEloy-Garcia, iand iR. iTeodorescu, i“Modeling, ianalysis, iand idesign iof istationary ireference iframe idroop icontrolled iparallel ithree-phase ivoltage isource iinverters,” iIEEE iTrans. iInd. iElectron., ivol. i60, ino. i4, ipp. i1271–1280, iApr. i2013. i"
            },
            {
                "key": "ref13",
                "unstructured": "iM. iSavaghebi, iJ. iM. iGuerrero, iA. iJalilian, iand iJ. iC. iVasquez, i“Mitigation iof ivoltage iand icurrent iharmonics iin igrid-connected imicrogrids,” iin iProc. iIEEE iISIE, iMay i2012, ipp. i1610–1615. i"
            },
            {
                "key": "ref14",
                "unstructured": "iW. iDu, iQ. iR. iJiang, iM. iJ. iErickson, iand iR. iH. iLasseter, i“Voltage-source icontrol iof iPV iinverter iin ia iCERTS imicrogrid,” iIEEE iTrans. iPower iDel., ivol. i29, ino. i4, ipp. i1726–1734, iAug. i2014"
            },
            {
                "key": "ref15",
                "unstructured": "iA. iElrayyah, iY. iSozer, iand iM. iElbuluk, i“Microgrid-connected iPV-based isources: ia inovel iautonomous icontrol imethod ifor imaintaining imaximum i i Experimental iresults ishowing imode itransfers iwith ithe iimproved idroop ischeme. i(a) iFull iview, i(b) iislanded ito igrid-connected ipower,” iIEEE iInd. iApplicat. iMag., ivol. i21, ino. i2, ipp. i19–29, iMar./Apr. i2015. i i[16] iT. iV. iTran, iT. iW. iChun, iH. iH. iLee, iH. iG. iKim, iand iE. iC. iNho, i“Pll-based iseamless itransfer icontrol ibetween igrid-connected iand iislanding imodes iin igrid-connected iinverters,” iIEEE iTrans. iPower iElectron., ivol. i29, ino. i10, ipp. i5218–5228, iOct. i2014. i"
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                "unstructured": "iR. i–R. iWai, iC. i–Y. iLin, iand iY. i–C. iHuang, i“Design iof ihigh-perfromance istand-alone iand igrid-connected iinverter ifor idistributed igeneration iapplications,” iIEEE iTrans. iInd. iElectron., ivol. i60, ino. i4, ipp. i1542–1555, iApr. i2013. i"
            },
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                "key": "ref17",
                "unstructured": "iX. iH. iWang, iC. iJ. iZhang, iX. iLi, iand iZ. iN. iGuo, i“Weighted icontrol iresearch ion iseamless itransfer ifor idual-mode ithree iphase iinverter iin imicro-grid,” iin iInt. iConf. iElectr. iMach. iSyst., iICEMS, iBeijing, iChina, i2011, ipp. i1-5. i"
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                "unstructured": "iC. iTrujillo iRodriguez, iD. iVelasco iDe iLa iFuente, iG. iGarcera, iE. iFigueres, iand iJ. iA. iGuacaneme iMoreno, i“Reconfigurable icontrol ischeme ifor ia iPV imicroinverter iworking iin iboth igrid-connected iand iisland imodes,” iIEEE iTrans. iInd. iElectron., ivol. i60, ino. i4, ipp. i1582–1595, iApr. i2013. i"
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