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A robust method to integrate end-to-end mission architecture optimization tools

机译:集成端到端任务架构优化工具的可靠方法

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End-to-end mission simulations include multiple phases of flight. For example, an end-to-end Mars mission simulation may include launch from Earth, interplanetary transit to Mars and entry, descent and landing. Each phase of flight is optimized to meet specified constraints and often depend on and impact subsequent phases. The design and optimization tools and methodologies used to combine different aspects of end-to-end framework and their impact on mission planning are presented. This work focuses on a robust implementation of a Multidisciplinary Design Analysis and Optimization (MDAO) method that offers the flexibility to quickly adapt to changing mission design requirements. Different simulations tailored to the liftoff, ascent, and atmospheric entry phases of a trajectory are integrated and optimized in the MDAO program Isight, which provides the user a graphical interface to link simulation inputs and outputs. This approach provides many advantages to mission planners, as it is easily adapted to different mission scenarios and can improve the understanding of the integrated system performance within a particular mission configuration. A Mars direct entry mission using the Space Launch System (SLS) is presented as a generic end-to-end case study. For the given launch period, the SLS launch performance is traded for improved orbit geometry alignment, resulting in an optimized a net payload that is comparable to that in the SLS Mission Planner's Guide.
机译:端到端任务模拟包括飞行的多个阶段。例如,端对端火星任务模拟可能包括从地球发射,星际到火星的过渡以及进入,下降和着陆。飞行的每个阶段都经过优化以满足特定的约束条件,并且通常取决于并影响后续阶段。介绍了用于组合端到端框架的不同方面及其对任务计划的影响的设计和优化工具及方法。这项工作着重于多学科设计分析和优化(MDAO)方法的稳健实现,该方法提供了快速适应不断变化的任务设计要求的灵活性。在MDAO程序Isight中集成并优化了针对轨迹的升空,上升和大气进入阶段的不同模拟,该模拟为用户提供了图形界面来链接模拟输入和输出。这种方法为任务计划人员提供了许多优势,因为它很容易适应不同的任务场景,并且可以增进对特定任务配置内集成系统性能的了解。提出了使用太空发射系统(SLS)进行火星直接进入任务的一般端对端案例研究。在给定的发射周期内,以交换SLS发射性能来改善轨道的几何形状对准,从而获得了与SLS任务计划者指南中可比的净有效载荷。

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