ICAROUS:用于无人系统可靠操作的集成可配置算法

M. Consiglio, C. Muñoz, G. Hagen, Anthony Narkawicz, Swee Balachandran
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引用次数: 44

摘要

NASA的无人机系统(UAS)交通管理(UTM)项目旨在使小型无人机在不受控制的空域(即G类空域)实现近期的安全运行。UTM研发的一个长期目标是适应整个国家空域系统(NAS)在低空进行超视距操作的小型无人机交通密度的预期增长。本文描述了一种被称为ICAROUS(无人系统可靠操作的集成可配置算法)的新能力,该能力正在UTM项目下开发。ICAROUS是一种软件架构,由高度可靠的算法组成,用于构建以安全为中心的自主无人飞机应用。ICAROUS算法开发的核心是使用完善的形式化方法,通过监测和约束自主系统的行为来保证更高水平的安全保证。ICAROUS的核心自主功能包括约束一致性监控和应急控制功能。ICAROUS还提供了一个高度可配置的用户界面,使任务特定软件组件的模块化集成成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ICAROUS: Integrated configurable algorithms for reliable operations of unmanned systems
NASA's Unmanned Aerial System (UAS) Traffic Management (UTM) project aims at enabling near-term, safe operations of small UAS vehicles in uncontrolled airspace, i.e., Class G airspace. A far-term goal of UTM research and development is to accommodate the expected rise in small UAS traffic density throughout the National Airspace System (NAS) at low altitudes for beyond visual line-of-sight operations. This paper describes a new capability referred to as ICAROUS (Integrated Configurable Algorithms for Reliable Operations of Unmanned Systems), which is being developed under the UTM project. ICAROUS is a software architecture comprised of highly assured algorithms for building safety-centric, autonomous, unmanned aircraft applications. Central to the development of the ICAROUS algorithms is the use of well-established formal methods to guarantee higher levels of safety assurance by monitoring and bounding the behavior of autonomous systems. The core autonomy-enabling capabilities in ICAROUS include constraint conformance monitoring and contingency control functions. ICAROUS also provides a highly configurable user interface that enables the modular integration of mission-specific software components.
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