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1、AbstractAbstractWiththecontinuousdevelopmentofourcountry'seconomy,theworld'senergyconsumptionofourcountryincreases,andtheproblemoftheshortageofenergybecomesobviously,andthefossilenergystilloccupythemainpositioninourcountry'senergyconsumptionstructure,sot
2、heproblemofourcountry'senvironmentisincreasinglyprominent.Accordingtothestatistics,ourcountry’sbuildingenergyconsumptionalreadyaccountfornearlyaquarterofthetotalenergyconsumptionofthesociety,thusreducingbuildingenergyconsumptionofourcountryhasanimportant
3、functionontheproblemsofenergyshortageandenvironmentaldegradation.Reasonablestrategyofoperationofcoldandelectricsupplysystemofenergysavingbuildingscanimprovetheefficiencyofenergy,reducetheconsumptionofbuildingenergy,sotheresearchofoptimaloperationofcoldan
4、delectricsupplysystemofenergysavingbuildingsplaysanimportantrole.Duetothenumberofcoldandelectricsupplysystemofenergysavingbuildings'supplyanddemandpowerdevicesislarge,andtherunningcharacteristicofpowerequipmentisdifferent,thereforecausedtheoptimizationof
5、systemtobecomplexnonlinearoptimizationproblem.Standardparticleswarmoptimizationalgorithmiseasytofallintolocaloptimuminsolvingcomplexnonlinearoptimizationproblems,soinordertogetmoreefficientalgorithm,thispaperfirstcombineddifferentialevolutionalgorithmint
6、oparticleswarmoptimization,andintegratedparameteradaptivecontrolstrategyintothealgorithmtoimprovetheparticleswarmalgorithm;Secondly,thispaperbasedontheinputandoutputcharacteristicsofenergystorageairconditioningsystemandtheworkingprincipleofphotovoltaicce
7、lls,establishedthemathematicalmodeloftheenergystorageairconditioningsystem,photovoltaiccells,andonthisbasis,thispaperlettheminimumcostofthesystemoperationtobetheobjectivefunction,theupandlowoutputofeachequipmentinthesystem,thebalanceofcoldandelectrictobe
8、theconstraints,andestablishedtheoptimizationmodelofcoldandelectricsupplysystemofenergysavingbuildings,thenusedimprovedparticleswarmoptimizationalgorithminthispaperandparticleswarmoptimizationalgorithmtorespectivelyoptimize