System engineering of autonomous space vehicles

M. Watson, S. B. Johnson, L. Trevino
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引用次数: 5

Abstract

Human exploration of the solar system requires fully autonomous systems when travelling more than 5 light minutes from Earth. This autonomy is necessary to manage a large, complex spacecraft with limited crew members and skills available. The communication latency requires the vehicle to deal with events with only limited crew interaction in most cases. The engineering of these systems requires an extensive knowledge of the spacecraft systems, information theory, and autonomous algorithm characteristics. The characteristics of the spacecraft systems must be matched with the autonomous algorithm characteristics to reliably monitor and control the system. This presents a large system engineering problem. Recent work on product-focused, elegant system engineering will be applied to this application, looking at the full autonomy stack, the matching of autonomous systems to spacecraft systems, and the integration of different types of algorithms. Each of these areas will be outlined and a general approach defined for system engineering to provide the optimal solution to the given application context.
自主空间飞行器系统工程
人类对太阳系的探索需要完全自主的系统,当距离地球超过5光分钟时。这种自主性对于管理一个大型、复杂的航天器是必要的,因为它的船员和技能有限。通信延迟要求车辆在大多数情况下处理只有有限乘员交互的事件。这些系统的工程需要对航天器系统、信息论和自主算法特性有广泛的了解。航天器系统的特性必须与自主算法的特性相匹配,才能对系统进行可靠的监测和控制。这就提出了一个大的系统工程问题。最近在以产品为中心的、优雅的系统工程方面的工作将应用于这一应用,研究完全自主堆栈、自主系统与航天器系统的匹配以及不同类型算法的集成。我们将概述这些领域中的每一个,并为系统工程定义一种通用方法,以便为给定的应用程序上下文提供最佳解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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