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On the detection of nearly optimal solutions in the context of single-objective space mission design problems

机译:关于单目标空间任务设计问题下的近乎最优解的检测

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摘要

When making decisions, having multiple options available for a possible realization of the same project can be advantageous. One way to increase the number of interesting choices is to consider, in addition to the optimal solution x*, also nearly optimal or approximate solutions; these alternative solutions differ from x* and can be in different regions – in the design space – but fulfil certain proximity to its function value f(x*). The scope of this article is the efficient computation and discretization of the set E of e–approximate solutions for scalar optimization problems. To accomplish this task, two strategies to archive and update the data of the search procedure will be suggested and investigated. To make emphasis on data storage efficiency, a way to manage significant and insignificant parameters is also presented. Further on, differential evolution will be used together with the new archivers for the computation of E. Finally, the behaviour of the archiver, as well as the efficiency of the resulting search procedure, will be demonstrated on some academic functions as well as on three models related to space mission design.
机译:在制定决策时,拥有多个选项以实现同一项目可能是有利的。一种增加有趣的选择数量的方法是,除了考虑最优解x *之外,还要考虑接近最优或近似的解。这些替代解决方案不同于x *,可以在设计空间中的不同区域内使用,但在一定程度上接近其函数值f(x *)。本文的范围是对标量优化问题的电子近似解集E的有效计算和离散化。为了完成此任务,将建议和研究两种归档和更新搜索过程数据的策略。为了强调数据存储效率,还提出了一种管理重要参数和无关紧要参数的方法。进一步地,差异演化将与新的存档器一起用于E的计算。最后,将在一些学术功能以及三个方面展示存档器的行为以及搜索过程的效率。与太空任务设计有关的模型。

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