A New Mixed Iterative Algorithm to Solve the Fuel-Optimal Linear Impulsive Rendezvous Problem

被引:0
|
作者
D. Arzelier
C. Louembet
A. Rondepierre
M. Kara-Zaitri
机构
[1] CNRS,
[2] LAAS,undefined
[3] Université de Toulouse,undefined
[4] LAAS,undefined
[5] IMT,undefined
关键词
Orbital rendezvous; Fuel optimal space trajectories; Primer vector theory; Impulsive maneuvers; Linear equations of motion;
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摘要
The optimal fuel impulsive time-fixed rendezvous problem is reviewed. In a linear setting, it may be reformulated as a non-convex polynomial optimization problem for a pre-specified fixed number of velocity increments. Relying on variational results previously published in the literature, an improved mixed iterative algorithm is defined to address the issue of optimization over the number of impulses. Revisiting the primer vector theory, it combines variational tests with sophisticated numerical tools from algebraic geometry to solve polynomial necessary and sufficient conditions of optimality. Numerical examples under circular and elliptic assumptions show that this algorithm is efficient and can be integrated into a rendezvous planning tool.
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页码:210 / 230
页数:20
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