Title :
STPA-based hazard analysis of a complex UAV system in take-off
Author :
Jieyu Chen ; Yi Lu ; Zhang, Shuguang ; Peng Tang
Author_Institution :
Airworthiness Technol. Res. Center, Beihang Univ., Beijing, China
Abstract :
The ATRC-UAV system is a multifunction system with close subsystem component interactions. Considering its complexity, component hardware failures are no longer the only reason for flight testing accidents, and a comprehensive approach is needed for hazard analysis. Systems-Theoretic Process Analysis (STPA) is a novel technique based on systems theory rather than traditional reliability theories. It addresses safety of complex systems as a control problem rather than a failure problem. In this paper, we adopt STPA on a subscale Unmanned Aerial Vehicle (UAV) system take-off hazard analysis and the potential feasibility of STPA for complex UAV system is demonstrated. Unsafe control actions during take-off and their relevant control flaws are identified and safety constrains at different levels are specified. In addition to component failures, we discover that component interactions and flawed human decision making might also lead to violation of safety constrains by using STPA.
Keywords :
air accidents; air safety; autonomous aerial vehicles; ATRC-UAV system; STPA-based hazard analysis; UAV system take-off hazard analysis; close subsystem component interactions; component failures; component hardware failures; control flaws; flawed human decision making; flight testing accidents; multifunction system; safety constrains; subscale unmanned aerial vehicle; system complexity; systems-theoretic process analysis; unsafe control actions; Accidents; Analytical models; Fault diagnosis; Hazards; Testing; Transportation; STAMP/STPA; UAV; accident model; complex system; hazard analysis;
Conference_Titel :
Transportation Information and Safety (ICTIS), 2015 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4799-8693-4
DOI :
10.1109/ICTIS.2015.7232133