机身
软件部署
有效载荷(计算)
计算机科学
航空学
船员
过程(计算)
备份
无人机
风险分析(工程)
适航性
系统工程
工程类
计算机安全
业务
认证
航空航天工程
政治学
网络数据包
操作系统
法学
生物
数据库
遗传学
作者
Carol Martínez,Pedro J. Sanchez-Cuevas,Simos Gerasimou,Abhishek Bera,Miguel A. Olivares-Méndez
出处
期刊:Drones
[MDPI AG]
日期:2021-11-24
卷期号:5 (4): 141-141
被引量:11
标识
DOI:10.3390/drones5040141
摘要
Deploying Unmanned Aircraft Systems (UAS) in safety- and business-critical operations requires demonstrating compliance with applicable regulations and a comprehensive understanding of the residual risk associated with the UAS operation. To support these activities and enable the safe deployment of UAS into civil airspace, the European Union Aviation Safety Agency (EASA) has established a UAS regulatory framework that mandates the execution of safety risk assessment for UAS operations in order to gain authorization to carry out certain types of operations. Driven by this framework, the Joint Authorities for Rulemaking on Unmanned Systems (JARUS) released the Specific Operation Risk Assessment (SORA) methodology that guides the systematic risk assessment for UAS operations. However, existing work on SORA and its applications focuses mainly on single UAS operations, offering limited support for assuring operations conducted with multiple UAS and with autonomous features. Therefore, the work presented in this paper analyzes the application of SORA for a Multi-UAS airframe inspection (AFI) operation, that involves deploying multiple UAS with autonomous features inside an airport. We present the decision-making process of each SORA step and its application to a multiple UAS scenario. The results shows that the procedures and safety features included in the Multi-AFI operation such as workspace segmentation, the independent multi-UAS AFI crew proposed, and the mitigation actions provide confidence that the operation can be conducted safely and can receive a positive evaluation from the competent authorities. We also present our key findings from the application of SORA and discuss how it can be extended to better support multi-UAS operations.
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