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首页> 外文期刊>The Journal of the Astronautical Sciences >Optimal Control for a Cooperative Rendezvous Between Two Spacecraft from Determined Orbits
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Optimal Control for a Cooperative Rendezvous Between Two Spacecraft from Determined Orbits

机译:从确定的轨道上两个航天器之间的协同交会的最优控制

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The mathematical model of a far-distance cooperative rendezvous between two spacecraft in a non-Keplerian orbit was established. Approximate global optimization was performed by a type of hybrid algorithm consisting of particle swarm optimization and differential evolution. In this process, the double-fitness function was established according to the objective function and the constraints; the double-fitness function was used to enable a better choice between the solutions obtained by the two algorithms at every iteration. In addition, the costate variables obtained were set as the initial values of the sequential quadratic programming to greatly increase the possibility of finding the approximate global optimal solution. After performing the calculations and simulations, it was concluded that the fuel required for orbiting was not influenced by the initial positions of the two spacecraft if the initial orbits of the two spacecraft were determined. However, the time consumption is strongly influenced in this situation.
机译:建立了非科普勒轨道上两架航天器之间远距离合作会合的数学模型。近似全局优化是通过一种混合算法执行的,该混合算法包括粒子群优化和差分进化。在此过程中,根据目标函数和约束条件建立了双重拟合函数。使用双拟合函数可以在每次迭代时在两种算法获得的解之间进行更好的选择。另外,将获得的costate变量设置为顺序二次规划的初始值,以大大增加找到近似全局最优解的可能性。在进行了计算和模拟之后,得出的结论是,如果确定了两个航天器的初始轨道,则轨道所需的燃料不受两个航天器的初始位置的影响。但是,在这种情况下,时间消耗受到很大影响。

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