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Multidisciplinary design and optimization of an air launched satellite launch vehicle using a hybrid heuristic search algorithm

机译:使用混合启发式搜索算法的空中卫星运载火箭的多学科设计和优化

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摘要

A multidisciplinary design and optimization strategy for a multistage air launched satellite launch vehicle comprising of a solid propulsion system to low earth orbit with the implementation of a hybrid heuristic search algorithm is proposed in this article. The proposed approach integrated the search properties of a genetic algorithm and simulated annealing, thus achieving an optimal solution while satisfying the design objectives and performance constraints. The genetic algorithm identified the feasible region of solutions and simulated annealing exploited the identified feasible region in search of optimality. The proposed methodology coupled with design space reduction allows the designer to explore promising regions of optimality. Modules for mass properties, propulsion characteristics, aerodynamics, and flight dynamics are integrated to produce a high-fidelity model of the vehicle. The objective of this article is to develop a design strategy that more efficiently and effectively facilitates multidisciplinary design analysis and optimization for an air launched satellite launch vehicle.
机译:本文提出了一种多学科的空载卫星运载火箭多学科设计和优化策略,该策略包括一个固体推进系统到低地球轨道,并采用了混合启发式搜索算法。所提出的方法结合了遗传算法的搜索属性和模拟退火,从而在满足设计目标和性能约束的同时,获得了最佳解决方案。遗传算法确定了解的可行区域,模拟退火利用确定的可行区域来寻找最优性。所提出的方法论与减少设计空间相结合,使设计师能够探索有希望的最优区域。集成了用于质量特性,推进特性,空气动力学和飞行动力学的模块,以生成车辆的高保真模型。本文的目的是开发一种设计策略,以更有效地促进空中卫星运载火箭的多学科设计分析和优化。

著录项

  • 来源
    《Engineering Optimization》 |2011年第3期|p.305-328|共24页
  • 作者

    A. F. Rafique;

  • 作者单位

    School of Astronautics, Beijing University of Aeronautics and Astronautics (BUAA), Beijing, People's Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
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