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On-board three-dimensional constrained entry flight trajectory generation.

机译:机载三维约束进入飞行轨迹生成。

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摘要

This dissertation presents a method for on-board generation of three-degree-of-freedom (3DOF) constrained entry trajectory. Given any feasible entry conditions and terminal area energy management (TAEM) interface conditions, this method generates rapidly a 3DOF trajectory featuring a single bank-reversal that satisfies all the entry corridor constraints and meets the TAEM requirements with high precision. First, the longitudinal reference profiles for altitude, velocity, flight path angle, and the corresponding controls with respect to range-to-go, are designed using the quasi-equilibrium glide condition (QEGC). Terminal backward trajectory integration and initial descent approaches are used to make the longitudinal references intrinsically flyable. Then the 3DOF entry trajectory is completed by tracking the longitudinal references with the approximate receding-horizon control method, while the bank-reversal point is searched such that the TAEM heading and distance to the Heading Alignment Circle (HAC) requirements are satisfied within specified precision. For extreme entry cases that marginally allow a single bank-reversal or no bank-reversals, a terminal reference ground path tracking method and a terminal open-loop trajectory search method are developed respectively to complement the on-board 3DOF trajectory generation method. The overall computational load needed by this method for any entry trajectory design amounts to less than integrating the 3DOF trajectory five times on average. Simulations with the X-33 and X-38 vehicle models and a broad range of entry conditions and TAEM interface requirements demonstrate the desired performance of this method. The on-board entry guidance scheme is then completed and tested by integrating this trajectory generation method with a state of art reference trajectory regulation algorithm on a high fidelity simulation software developed at NASA Marshall Space Flight Center. Instead of preloading a reference trajectory, this method generates a 3DOF entry trajectory from the current state in 1 to 2 seconds on the simulator. Then this freshly generated trajectory is used as the reference for the guidance system. The results demonstrate the great potential of this innovative entry guidance method.
机译:本文提出了一种在机上生成三自由度(3DOF)约束进入轨迹的方法。给定任何可行的进入条件和终端区域能量管理(TAEM)界面条件,此方法可快速生成3DOF轨迹,该轨迹具有单个银行反转,可满足所有入口通道约束并高精度地满足TAEM要求。首先,使用准平衡滑行条件(QEGC)设计高度,速度,飞行路径角度的纵向参考曲线以及相对于待航程的相应控制。终端向后轨迹整合和初始下降方法被用来使纵向参考本质上可以飞行。然后,通过使用近似后退-水平控制方法跟踪纵向参考来完成3DOF进入轨迹,同时搜索堤岸反转点,以便在指定的精度内满足TAEM航向和到航向对准圆(HAC)要求的距离。对于只允许单个堤岸反转或不允许堤岸反转的极端进入情况,分别开发了终端参考地面路径跟踪方法和终端开环轨迹搜索方法,以补充机载3DOF轨迹生成方法。对于任何进入轨迹设计,此方法所需的总体计算负荷平均不到整合3DOF轨迹的五倍。 X-33和X-38车辆模型的仿真以及广泛的进入条件和TAEM接口要求证明了该方法的理想性能。然后,通过在美国国家航空航天局马歇尔太空飞行中心开发的高逼真度仿真软件上将这种轨迹生成方法与最新的参考轨迹调节算法相集成,来完成并测试机载进入导航方案。该方法不是预先加载参考轨迹,而是在模拟器上在1到2秒内从当前状态生成3DOF入口轨迹。然后,将此新生成的轨迹用作制导系统的参考。结果证明了这种创新的入门指导方法的巨大潜力。

著录项

  • 作者

    Shen, Zuojun.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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