启发式智能设计方案是跨大气巡洋舰的一种解决范例

A. Khan, Ali Sarosh
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引用次数: 1

摘要

人们普遍认为,空天飞机是今后开展空间活动的最可行的解决办法。空间飞机升力和推进机构的高度耦合特性限制了经典设计方法的使用。设计方法的范式转变是必要的。因此,必须采用认知智能方法来发展不依赖于档案数据的启发式智能设计方案。这些方案还必须是自启动的,以避免繁琐的递归——因此,推荐可以与启发式智能方法集成的反向设计方法。利用高超声速气动热力学和能量分配原理,基于高保真近似解析公式的快速、节约的设计方法必须得到解决,以发展出同时满足高集成配置和跨大气巡洋舰质量模型要求的设计方案。本文简要介绍了一种用于航天飞机系统构型设计、优化和智能分类的HI2D方案。结果表明,该方案在基线配置的几何解和性能解方面有显著改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heuristic-intelligent design schemes a solution paradigm for transatmospheric cruiser
Space planes are widely envisaged as the most viable solution for carrying out space activities in the future. The highly coupled natures of lift and propulsion mechanism in space planes limit the use of classical design approach. A paradigm shift in design methodologies is needed. Cognitive-intelligent methods must therefore be employed to evolve Heuristic-Intelligent Design Schemes that do not rely on archival data. These schemes must also be self-starting to avoid tedious recursions - hence inverse design approaches are recommended that can get integrated with heuristic-intelligent methods. A fast and frugal method based on high-fidelity approximate analytical formulation that uses hypersonic aerothermodynamics and energy partition principles must be resolved to evolve design solutions that simultaneously satisfy requirements for highly-integrated configurations as well as mass-model of transatmospheric cruisers. This paper briefly describes one such scheme called HI2D that can be used for designing, optimization and intelligent classification of spaceplane system configurations. The results of this scheme show significant improvement in the geometric and performance solution of baseline configuration.
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