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Space Shuttle Ascent Flight Design Process: Evolution and Lessons Learned

机译:航天飞机上升飞行设计过程:演变和经验教训

摘要

The Space Shuttle Ascent Flight Design team is responsible for defining a launch to orbit trajectory profile that satisfies all programmatic mission objectives and defines the ground and onboard reconfiguration requirements for this high-speed and demanding flight phase. This design, verification and reconfiguration process ensures that all applicable mission scenarios are enveloped within integrated vehicle and spacecraft certification constraints and criteria, and includes the design of the nominal ascent profile and trajectory profiles for both uphill and ground-to-ground aborts. The team also develops a wide array of associated training, avionics flight software verification, onboard crew and operations facility products. These key ground and onboard products provide the ultimate users and operators the necessary insight and situational awareness for trajectory dynamics, performance and event sequences, abort mode boundaries and moding, flight performance and impact predictions for launch vehicle stages for use in range safety, and flight software performance. These products also provide the necessary insight to or reconfiguration of communications and tracking systems, launch collision avoidance requirements, and day of launch crew targeting and onboard guidance, navigation and flight control updates that incorporate the final vehicle configuration and environment conditions for the mission. Over the course of the Space Shuttle Program, ascent trajectory design and mission planning has evolved in order to improve program flexibility and reduce cost, while maintaining outstanding data quality. Along the way, the team has implemented innovative solutions and technologies in order to overcome significant challenges. A number of these solutions may have applicability to future human spaceflight programs.
机译:航天飞机上升飞行设计团队负责定义满足所有计划任务目标的轨道发射轨迹,并确定这种高速和苛刻飞行阶段的地面和机载重组要求。这种设计,验证和重新配置过程可确保所有适用的任务场景都被包含在飞行器和航天器的综合认证约束条件和标准之内,并包括针对上坡和地面对地面异常情况的名义上升轮廓和轨迹轮廓的设计。该团队还开发了各种相关的培训,航空电子飞行软件验证,机上人员和操作设施产品。这些关键的地面和机载产品为最终用户和运营商提供了必要的洞察力和态势感知,以了解轨迹动态,性能和事件序列,中止模式边界和修改,飞行性能以及用于运载火箭阶段的射程预测,以用于航程安全和飞行软件性能。这些产品还提供了对通信和跟踪系统的必要见解或重新配置,避免发射冲突的要求以及针对发射人员的目标瞄准和机载制导,导航和飞行控制更新的日程,其中包括了任务的最终车辆配置和环境条件。在航天飞机计划的整个过程中,为了提高计划的灵活性和降低成本,同时又保持了出色的数据质量,发展了飞行轨迹设计和任务计划。在此过程中,团队实施了创新的解决方案和技术,以克服重大挑战。这些解决方案中的许多解决方案可能适用于未来的人类航天计划。

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