SAFEGUARD: An assured safety net technology for UAS

Evan Dill, S. Young, K. Hayhurst
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引用次数: 53

Abstract

As demands increase to use unmanned aircraft systems (UAS) for a broad spectrum of commercial applications, regulatory authorities are examining how to safely integrate them without loss of safety or major disruption to existing airspace operations. This work addresses the development of the Safeguard system as an assured safety net technology for UAS. The Safeguard system monitors and enforces conformance to a set of rules defined prior to flight (e.g., geospatial stay-out or stay-in regions, speed limits, altitude limits). Safeguard operates independently of the UAS autopilot and is strategically designed in a way that can be realized by a small set of verifiable functions to simplify compliance with regulatory standards for commercial aircraft. A framework is described that decouples the system from any other devices on the UAS as well as introduces complementary positioning source(s) for applications that require integrity and availability beyond what the Global Positioning System (GPS) can provide. Additionally, the high level logic embedded within the software is presented, as well as the steps being taken toward verification and validation (V&V) of proper functionality. Next, an initial prototype implementation of the described system is disclosed. Lastly, future work including development, testing, and system V&V is summarized.
SAFEGUARD:无人机的安全保障网技术
随着无人驾驶飞机系统(UAS)在广泛商业应用中的需求增加,监管机构正在研究如何在不丧失安全性或对现有空域运营造成重大干扰的情况下安全地整合它们。这项工作解决了保障系统作为无人机安全保障网技术的发展。“安全保障”系统监控并强制执行飞行前定义的一套规则(例如,地理空间待在或待在区域、速度限制、高度限制)。“保障”系统独立于无人机自动驾驶仪运行,其战略设计方式可以通过一组可验证的功能来实现,以简化对商用飞机监管标准的遵守。描述了一个框架,该框架将系统与UAS上的任何其他设备解耦,并为需要全球定位系统(GPS)所不能提供的完整性和可用性的应用程序引入补充定位源。此外,还介绍了软件中嵌入的高级逻辑,以及为适当功能的验证和确认(V&V)所采取的步骤。接下来,公开所述系统的初始原型实现。最后,对今后的开发、测试和系统V&V工作进行了总结。
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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