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Systems Theoretic Accident Model and Process (STAMP) applied to a Royal Navy Hawk jet missile simulation exercise

机译:系统理论意外模型和过程(邮票)适用于皇家海军鹰喷射导弹仿真运动

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The Royal Navy uses Hawk jets to simulate sea-skimming missile attacks against vessels as part of their training regulations. To best achieve these goals, pilots of the Hawk are required to fly at approximately 50 feet above sea level to accurately mimic the flight path of a missile. Despite this need the Hawk is not equipped with a radar altimeter and instead relies upon pilot skill to ensure the safe completion of the operation. Incidents whereby the Hawk jets have struck the water are however recorded, risking pilot safety. This paper explores the Hawk missile simulation task using a Systems Theoretic Accident Model and Process (STAMP) and its corresponding hazard analysis Systems-Theoretic Process Analysis (STPA) methodology to map the key stakeholders within this operation. In doing so, the method explores areas of potential risk in the system and recommends how overall systemic safety of the operation can be improved.
机译:皇家海军使用Hawk Jets模拟海上掠夺导弹攻击船只作为其培训法规的一部分。 为了最佳实现这些目标,鹰的飞行员需要在海拔大约50英尺上飞行以准确地模仿导弹的飞行路径。 尽管需要这种需要,鹰队没有配备雷达高度计,而是依赖于试点技巧,以确保安全完成操作。 然而,鹰喷射击中水的事件被记录,危险的试点安全。 本文探讨了使用系统理论意外模型和过程(邮票)及其相应的危险分析系统 - 理论过程分析(STPA)方法来探讨Hawk导弹仿真任务,以在此操作中映射关键利益相关者。 在此过程中,该方法探讨了系统中潜在风险的领域,并建议改善操作的整体系统安全性。

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