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- W2182215392 abstract "TTCincorporating withFACTSdevices isanoptimal problemeachparticipant strives togainmaximumeconomical benefits constrained bysomeequalities andinequalities. Thispaper withgeneration units andtransmission system trend tooperate proposes a mathematical modelforcalculating TTC neartotheir stability limits. Itisapttoviolate security incorporating withFACTSdevices inpowermarkets, and constraints, suchasoverloading, unaccepted voltage dip. detailed calculation methodisalso putforward. Theconstraints . ' . ' include voltage constraints, thermal stability limits, generator's Meanme,nAccuratel calcing TTCplays i rantiron capacity limits, loaddemand, steady-state powerflow, and large amountofpowerwheeling andfrequent transmission control parameter constraints ofFACTSdevices, etc.The transaction. Tocalculate TTCisbecoming morefrequently sensitivity-based repetitive linear iterative approach isproposedthanever, andtheresults needtobroadcast onthepower tosolve theproposed model. Thedetailed solution process is market intimeinorder toallparticipants makingcorrect described inthispaper.To realize theproposed modeland calculation method, aTTCcalculation software incorporating decisions andplanning, andtransactions smoothly ongoing. withFACTSdevices isdeveloped based onPSASP/UPI, asetof Obviously, TTCchanges withtimeandlocation, related to advanced application software package developed by China ' o Electric PowerResearch Institute. Thispaper proposes anew parameters ofpowersystem components, operating condition approach oncombined TTCsolution including FACTSand andconstraints. Determing TTC notonlytakesnormal powerflowcalculation basedonPSASP/UPI, andgives the operation modeinto account, butalso contingency conditions. interface program forUserProgramming Interface (UPI) in Itisquite difficult tocalculate TTCaccurately. Manyvaluable PSASP.TheIEEE14-bus testsystemisusedtoverify the a a proposed algorithm andprogram. Numerical results showthat FACTSdevices andtheir locations havedifferent impacts on practically [2]-[5], suchasDC powerflowbasedPower TTC,alsoprove thattheproposed modelandalgorithm is Transfer Distribution Factor method(PTDF), Continuous correct andeffective. PowerFlowmethod(CPF), Optimal PowerFlowmethod (OPF), Repetitive PowerFlow(RPF), sensitivity analysis" @default.
- W2182215392 created "2016-06-24" @default.
- W2182215392 creator A5012118692 @default.
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- W2182215392 date "2005-01-01" @default.
- W2182215392 modified "2023-09-24" @default.
- W2182215392 title "Determination ofTotal Transfer Capability Incorporating FACTSDevices inPowerMarkets" @default.
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- W2182215392 hasPublicationYear "2005" @default.
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