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Assessing Air Traffic Control System Safety with System Controllability

机译:通过系统可控性评估空中交通管制系统的安全性

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In safety critical systems, such as air traffic control systems and nuclear power plants, accidents are prevented in part by using system control to move the system from undesirable states to desirable states. This "system control-ability" is a result of the system's composition and configuration and can potentially be used as a safety indicator. In this paper, we propose a probabilistic metric to evaluate a system's controllability, Probabilistic System Controllability (PSC). We develop a framework for quantitative safety assessment in complex systems using PSC. To demonstrate the metric's utility, we apply the framework to three different system configurations for collision avoidance air traffic control systems. The result shows that, in a pending collision scenario, a system with both automation and controller has lower controllability, than a system with automation only. This conclusion reinforces the observation of the Uberlingen Mid-Air Collision Accident that redundancy in systems can result in less safety.
机译:在诸如航空交通控制系统和核电站之类的安全关键系统中,通过使用系统控制将系统从不希望的状态转移到希望的状态,可以部分地防止事故发生。这种“系统可控制性”是系统组成和配置的结果,可以潜在地用作安全指标。在本文中,我们提出了一种概率度量来评估系统的可控性,即概率系统可控性(PSC)。我们开发了使用PSC在复杂系统中进行定量安全性评估的框架。为了演示该度量标准的实用性,我们将该框架应用于防撞空中交通管制系统的三种不同系统配置。结果表明,在未决的碰撞场景中,具有自动化和控制器功能的系统与仅具有自动化功能的系统相比,具有较低的可控性。该结论加强了对Uberlingen空中碰撞事故的观察,即系统中的冗余会导致安全性降低。

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