Chinese Space Science and Technology ›› 2017, Vol. 37 ›› Issue (4): 1-9.doi: 10.16708/j.cnki.1000-758X.2017.0041

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Modelingandcontrolforaliquidfilledspacecraftwithflexibleappendagesincloseproximity

WANG  Shou-Zhe1, LIU  Hua-Qing2, ZHANG  Qing-Zhan1, JIN  Yong-Qiang1,*, SHENG  Ying-Hua1   

  1. 1AerospaceSystemEngineeringShanghai,Shanghai201109,China
    2ShanghaiInstituteofSatelliteEngineering,Shanghai201109,China
  • Received:2016-08-23 Revised:2017-01-06 Published:2017-08-25 Online:2017-06-29

Abstract: Incloseproximity,theservicingspacecraftisacomplexsystemwithrigidflexibleliquidcoupled,andtheliquidsloshingmodel,suchaspendulum,isn′tapplicable.Thedynamicsmodelingandcontrolofthisspacecraftwerestudied.Firstly,akindofnewliquidsloshingequivalentmechanicalmodelwasderivedbyvirtualworkprinciple,anditcouldbeappliedtothesituationoftriaxialthrust.Secondly,arelativepositionguidancevectorandarelativepositionerrorvectorweredefined,andarelativepositionerrordynamicsmodelwasderived.Thirdly,combiningtherelativepositionerrordynamicswiththerelativeattitude  dynamics,acoupledrelativeattitudeorbitdynamicsmodelwasestablished,whichwassuitablefortheprocessofcloseproximityinrendezvousanddocking.Themodelwasalsorigidflexibilityliquidcoupled.Finally,acontrollawbasedontheslidemodecontrolwasdesignedtoestimatetheunknownbutboundeddisturbances,systemuncertaintiesandmeasurementnoise.Theeffectivenessofthecontrollawwasvalidatedbynumericalsimulation.TheresultsofthesloshinginthesimulationagreewellwiththeFlow-3Dresults,whichindicatesthattheliquidsloshingequivalentmechanicalmodelisreasonable.

Key words: onorbitservicing, closeproximity, trajectoryguidance, rigidflexibleliquidcoupled, relativeattitudeorbitcoupled, slidingmodeestimator