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Next Generation Simulation Framework for Robotic and Human Space Missions

机译:机器人和人类太空任务的下一代仿真框架

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The Dartslab team at NASA's Jet Propulsion Laboratory (JPL) has a long history of developing physics-based simulations based on the Darts/Dshell simulation framework that have been used to simulate many planetary robotic missions, such as the Cassini spacecraft and the rovers that are currently driving on Mars. Recent collaboration efforts between the Dartslab team at JPL and the Mission Operations Directorate (MOD) at NASA Johnson Space Center (JSC) have led to significant enhancements to the Dartslab DSENDS software framework. The new version of DSENDS is now being used for new planetary mission simulations at JPL. JSC is using DSENDS as the foundation for a suite of software known as COMPASS that is the basis for their new human space mission simulations and analysis. In this paper, we will describe the collaborative process with the JPL Dartslab and the JSC MOD team that resulted in the redesign and enhancement of the DSENDS software. We will outline the improvements in DSENDS that simplify creation of new high-fidelity robotic/spacecraft simulations. We will illustrate how DSENDS simulations are assembled and show results from several mission simulations.
机译:NASA的喷气式推进实验室(JPL)的Dartslab团队在历史上,基于飞镖/ DShell模拟框架开发了基于物理的模拟,这些框架已被用于模拟许多行星机器人任务,例如Cassini Spacocraft和群体目前在火星上驾驶。 NASA JOHNSON Space Center(JSC)在JPL和特派团运营局(MOD)的DARTSLAB团队之间最近的合作努力导致了DARTSLAB DSENDS软件框架的显着增强。新版本的DSENDS现在正在JPL用于新的行星任务模拟。 JSC正在使用DSENDS作为一套被称为指南针的软件的基础,这是他们新的人类空间仿真和分析的基础。在本文中,我们将描述与JPL Dartslab和JSC Mod团队的协作过程,导致DSends软件的重新设计和增强。我们将概述DSENDS的改进,简化了创建新的高保真机器人/航天器模拟。我们将说明如何组装DSENDS模拟,并从几个任务模拟中显示结果。

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