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A global optimization method for the design of space trajectories

机译:一种设计空间轨迹的全局优化方法

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The problem of optimally designing a trajectory for a space mission is considered in this paper. Actual mission design is a complex, multi-disciplinary and multi-objective activity with relevant economic implications. In this paper we will consider some simplified models proposed by the European Space Agency as test problems for global optimization (GTOP database). We show that many trajectory optimization problems can be quite efficiently solved by means of relatively simple global optimization techniques relying on standard methods for local optimization. We show in this paper that our approach has been able to find trajectories which in many cases outperform those already known. We also conjecture that this problem displays a “funnel structure” similar, in some sense, to that of molecular optimization problems.
机译:本文考虑了为太空任务优化设计轨迹的问题。实际任务设计是一项复杂的,多学科的,多目标的活动,具有相关的经济意义。在本文中,我们将考虑由欧洲航天局提出的一些简化模型,作为全球优化的测试问题(GTOP数据库)。我们表明,借助于相对简单的全局优化技术(依赖于局部优化的标准方法),可以非常有效地解决许多轨迹优化问题。我们在本文中表明,我们的方法已经能够找到在许多情况下优于已知轨迹的轨迹。我们还可以推测,此问题在某种意义上显示了类似于分子优化问题的“漏斗结构”。

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