首页> 外文会议>Conference on AIAA guidance, navigation, and control >Entry Atmospheric Flight Control Authority Impacts on GNC and Trajectory Performance for Orion Exploration Flight Test 1
【24h】

Entry Atmospheric Flight Control Authority Impacts on GNC and Trajectory Performance for Orion Exploration Flight Test 1

机译:入境大气飞行控制权威对猎户座勘探飞行试验的GN&C和轨迹性能的影响1

获取原文

摘要

One of the key design objectives of NASA's Orion Exploration Flight Test 1 is to execute a guided entry trajectory demonstrating Guidance, Navigation, and Control (GN&C) capability. The focus of this paper is the flight control authority of the vehicle throughout the atmospheric entry flight to the target landing site and its impacts on GN&C, parachute deployment, and integrated performance. The vehicle's attitude control authority is obtained from thrusting 12 Reaction Control System (RCS) engines, with four engines to control yaw, four engines to control pitch, and four engines to control roll. The static and dynamic stability derivatives of the vehicle are determined to assess the inherent aerodynamic stability. The aerodynamic moments at various locations in the entry trajectory are calculated and compared to the available torque provided by the RCS. Interaction between the vehicle's RCS engine plumes and the aerodynamic conditions are considered to assess thruster effectiveness. This document presents an assessment of Orion's flight control authority and its effectiveness in controlling the vehicle during critical events in the atmospheric entry trajectory.
机译:其中的美国宇航局猎户座探索飞行测试1的主要设计目标是执行被引导进入轨迹表明制导,导航与控制(GN&C)能力。本文的重点是车辆的整个进入大气层飞行到目标着陆点及其对GN&C,降落伞的影响,并综合性能的飞行控制权限。车辆姿态控制权限从突刺12反作用控制系统(RCS)发动机获得,具有四个引擎控制偏航,四个引擎控制音调,和四个引擎控制辊。车辆的静态和动态稳定性衍生物被确定以评估固有的空气动力学稳定性。在进入轨道不同位置的气动力矩计算和比较,以通过RCS提供的可用扭矩。车辆的发动机RCS羽毛和空气动力学条件之间的互动被视为评估推进器效率。本文件提出Orion的飞行控制权限及其在进入大气层轨迹关键事件过程中控制车辆有效性进行评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号