Path: FormationFlying/LP
% Examine the "convergence rate" for an impulsive LP solution As we increase the number of samples, the burn sequence converges to the exact solution. This happens slower at higher eccentricities, requiring a greater number of samples. Details: Random initial and final states Vary the # of samples / orbit Vary eccentricity Vary duration from Since version 7. ------------------------------------------------------------------------ Usage: LPConvergenceDemo; ------------------------------------------------------------------------ See also AC, Mag, LPEccentric, FFEccGoals2Hills, OrbRate ------------------------------------------------------------------------ % ------------------------------------------------------------------------------- Copyright (c) 2004 Princeton Satellite Systems, Inc. All rights reserved. -------------------------------------------------------------------------------
FormationFlying: EccDynamics/FFEccDH FormationFlying: EccDynamics/FFEccGoals FormationFlying: EccDynamics/FFEccLinOrb FormationFlying: EccDynamics/FFEccProp FormationFlying: EccDynamics/FFEccRMat FormationFlying: EccDynamics/FFEccYExt EccDynamics: Derivatives/FFEccDDY EccDynamics: Derivatives/FFEccDY FormationFlying: LP/LPEccentric FormationFlying: Transformation/FFEccGoals2Hills FormationFlying: Utility/Nu2TimeDomain FormationFlying: Utility/NuDot FormationFlying: Visual/FFEccAnalyzeShape SC: BasicOrbit/E2M SC: BasicOrbit/Nu2E SC: BasicOrbit/Nu2M SC: BasicOrbit/OrbRate Common: CommonData/SwooshWatermark Common: Control/C2DZOH Common: General/CellToMat Common: General/DispWithTitle Common: General/MatToCell Common: General/Watermark Common: Graphics/NewFig Common: Graphics/Plot2D Common: Graphics/PltStyle Math: Analysis/Simplex Math: Analysis/Simplex2 Math: Linear/DupVect Math: Linear/InvP Math: Linear/Mag Math: Solvers/NewtRaph Math: Trigonometry/UnwrapPhase Math: Trigonometry/WrapPhase
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