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STPA for continuous controls: A flight testing study of aircraft crosswind takeoffs

机译:连续控制的STPA:飞机交通起飞的飞行试验研究

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A light aircraft crosswind takeoff is a risky operation. The purpose of this paper is to demonstrate the feasibility of applying STPA (Systems-Theoretic Process Analysis) to closed-loop continuous controls, identifying the hazards of crosswind takeoffs with light aircraft and the mitigating actions that could make its execution safer. The paper analyzes the variables that affect the response of the aircraft when subjected to severe crosswind, considering how aircraft characteristics affect its stability. The hazard analysis technique STPA is a tool based on the conceptual accident causality model called STAMP (System-Theoretic Accident Model and Processes), which in turn is based on systems theory. To deal with closed-loop actions on continuous control systems, a new approach to STPA was developed and effectively used to analyze data collected on a crosswind flight test campaign. This campaign, conducted by the Flight Test and Research Institute, led to a flight envelope extension of the Embraer's training aircraft Super Tucano. The demonstration analysis showed the need for new, previously unidentified mitigating measures to be assigned to aircraft manufacturers, operators or owners, and their pilots.
机译:轻型飞机交叉风起飞是一种危险的操作。本文的目的是展示将​​STPA(系统 - 理论分析分析)应用于闭环连续控制的可行性,识别与轻型飞机的交叉风起飞的危害以及可能使其执行更安全的缓解动作。本文分析了在经受严重交叉风的时影响飞机响应的变量,了解飞机特征如何影响其稳定性。危险分析技术STPA是一种基于概念事故因果型模型的工具,其印章(系统 - 理论事故模型和过程),这反过来基于系统理论。为了处理连续控制系统上的闭环动作,开发了一种新的STPA方法,并有效地用于分析Crosswind飞行测试活动收集的数据。这项运动由飞行试验和研究所进行,导致了Abstaer培训飞机超级泰曼诺的飞行信封延伸。示范分析表明,需要为飞机制造商,运营商或业主和飞行员分配新的,以前未识别的减轻措施。

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