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计及综合需求响应的电热气互联能源系统环保经济优化调度 Title:OptimizingtheEnvironmentalandEconomicDispatchofaSmartElectric-ThermalEnergySystemConsideringIntegratedDemandResponse Abstract: Thetransitionfromtraditionalfossilfuel-basedenergysystemstocleanerandrenewableenergysourcesisbecomingincreasinglyimportanttocombatthenegativeeffectsofclimatechange.Inthisregard,theintegrationofelectricandthermalenergysystemsoffersapromisingsolution.Thispaperexplorestheoptimizationofasmartelectric-thermalenergysystemtoachieveenvironmentalandeconomicbenefitswhileconsideringtheintegrationofdemandresponse. Introduction: Thegrowingconcernsaboutclimatechangeandtheneedforsustainableenergysolutionshaveledtotheexplorationofnewmethodsforoptimizingenergysystems.Theintegrationofelectricandthermalenergysystemshasemergedasapromisingapproachtoincreaseenergyefficiency,reducegreenhousegasemissions,andensureeconomicviability.Thispaperaimstoproposeacomprehensiveoptimizationframeworkforasmartelectric-thermalenergysystem,takingintoaccountbothenvironmentalandeconomicfactors,whileincorporatingdemandresponsemeasures. Methodology: Theproposedoptimizationframeworkinvolvesamulti-objectiveapproachthatsimultaneouslyconsiderstheminimizationofenvironmentalimpactsandtheeconomicviabilityofthesystem.Theformulationoftheoptimizationproblemincludesvarioustechnicalconstraints,suchastransmissioncapacity,generationcapacity,andenergyefficiency.Additionally,itintegratesdemandresponsefeatures,allowingconsumerstoadjusttheirenergyusagebasedonreal-timepricesignals. ResultsandDiscussion: Theoptimizationresultsdemonstratethattheproposedframeworkeffectivelyreducestheoverallenvironmentalimpactoftheelectric-thermalenergysystemwhileensuringacost-effectivedispatch.Byoptimizingtheoperationofdifferentenergysources(includingrenewableandnon-renewable)andconsideringtheintegrationofdemandresponsemeasures,thesystemachievesasignificantreductioningreenhousegasemissions.Additionally,theeconomicviabilityofthesystemisimprovedthroughtheutilizationofdemandresponse,whichenabl

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