Chinese Space Science and Technology ›› 2015, Vol. 35 ›› Issue (3): 26-.doi: 10.3780/j.issn.1000-758X.2015.03.004
Previous Articles Next Articles
WANGYu,WEIYanming,LIYong,YUYang,BIANBingxiu
Published:
Online:
Abstract: Theelectricsailisaninnovativenonpropellantpropulsioninspacewhichtakesadvantageof themomentumofthesolarwind.Theminimumtimeinterplanetarytransferproblemoftheelectricsailwasstudied.ThemissionscenariosabouttransferringfromtheEarthtotheMarsandVenuswereinvestigated,usingacontinuoussteeringlawmodel,inapolarinertialframe.Twodirectmethodsbasedontheparticleswarmoptimization(PSO)algorithmwereproposed,whichavoidedsolvingthetwopointboundaryvalueproblem(TPBVP)whichwassensitivetotheinitialvalueofthecostatevariables.Thefirstmethodusedtheshootingmethodtodiscretizedthecontrolvariables,transformingtheoptimalcontrolproblemintoaparameteroptimizationproblemofnonlinearpropramming.BasedonthePSOalgorithm,thenearoptimaltransfertrajectorywasobtained.Thesecondmethodfocusedonthecharacteristicsthatallthecontinuouscontrollawscanbefittedusingthepolynomialfunctionundercertainprecision.Acontrollawwasdesignedtoapproximatetheoptimaltransfertrajectorybasedontheanalysisoftheresultsfromthefirstmethod,andthePSOalgorithmwasusedtooptimizetheparametersofthedesignedcontrollaw.Thesimulationresultsshowthatbothmethodshavetheadvantagesoftherandominitialvariableselection,largeconvergencerangeandgoodrobustness.
Key words: Electricsail, Trajectoryoptimization, ParticleswarmalgorithmInterplanetaryexploration
WANGYu,WEIYanming,LIYong,YUYang,BIANBingxiu. TrajectoryOptimizationofElectricSailBasedonParticleSwarmAlgorithm[J]. Chinese Space Science and Technology, 2015, 35(3): 26-.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
URL: https://journal26.magtechjournal.com/kjkxjs/EN/10.3780/j.issn.1000-758X.2015.03.004
https://journal26.magtechjournal.com/kjkxjs/EN/Y2015/V35/I3/26