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Nautical Collision Avoidance: The Cognitive Challenges of Balancing Safety, Efficiency, and Procedures

机译:航海碰撞避免:平衡安全,效率和程序的认知挑战

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Objective Experimentally investigate maneuver decision preferences in navigating ships to avoid a collision. How is safety (collision avoidance) balanced against efficiency (deviation from path and delay) and rules of the road under conditions of both trajectory certainty and uncertainty. Background Human decision error is a prominent factor in nautical collisions, but the multiple factors of geometry of collisions and role of uncertainty have been little studied in empirical human factors literature. Approach Eighty-seven Mechanical Turk participants performed in a lower fidelity ship control simulation, depicting ownship and a cargo ship hazard on collision or near-collision trajectories of various conflict geometries, while controlling heading and speed with the sluggish relative dynamics. Experiment 1 involved the hazard on a straight trajectory. In Experiment 2, the hazard could turn on unpredictable trials. Participants were rewarded for efficiency and penalized for collisions or close passes. Results Participants made few collisions, but did so more often when on a collision path. They sometimes violated the instructed rules of the road by maneuvering in front of the hazard ship’s path. They preferred speed control to heading control. Performance degraded in conditions of uncertainty. Conclusion Data reveal an understanding of maneuver decisions and conditions that affect the balance between safety and efficiency. Application The simulation and data highlight the degrading role of uncertainty and provide a foundation upon which more complex questions can be asked, asked of more trained navigators, and decision support tools examined.
机译:客观实验调查导航船舶的机动决策偏好,以避免碰撞。在轨迹确定性和不确定性的条件下,如何抵御效率(碰撞避免)抵御效率(偏离路径和延迟)和规则。背景技术人类决策误差是航海碰撞中的突出因素,但在实证人类因素文献中几乎没有研究过的碰撞和不确定性作用的多种因素。接近八十七个机械土耳其参与者在较低的保真船舶控制模拟中进行,描绘了各种冲突几何形状的碰撞或近乎碰撞轨迹的机构和货船危险,同时控制着慢性相对动态的标题和速度。实验1涉及直流轨迹的危险。在实验2中,危险可以打开不可预测的试验。参与者获得效率的奖励,惩罚碰撞或近距离。结果参与者造成了很少的碰撞,但在碰撞路径时更常见。他们有时通过在危险船的道路前面操纵来违反道路的指示规则。它们优选速度控制到前置控制。在不确定性条件下性能降解。结论数据揭示了了解影响安全性和效率之间平衡的机动决策和条件。应用程序模拟和数据突出了不确定性的劣化作用,并提供了更复杂的问题,询问更多培训的导航器,并检查了决策支持工具。

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