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A cellular automation model for convoy traffic in Arctic waters

机译:北极水域护航交通的蜂窝自动化模型

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摘要

Marine transportation in arctic waters involves risk due to the presence of ice, rapid weather changes, reduced visibility, and remoteness. Icebreaker assistance and ice-convoys are used to facilitate the safe navigation of commercial vessels transiting Arctic waters. Collision between individual ships, or a ship and an icebreaker, during a convoy is a potential danger. To study such risk, this paper presents an updated Nagel-Schrekenberg (NaSch) model of the marine convoy traffic integrated with a Bayesian Network (BN) based probabilistic approach. This approach has been used to predict the maximum waterway density for the safe flow of traffic, and the collision probability during a convoy. The approach is tested here on a convoy in the Vilkitskii strait. The BN model proposed here could assist in assessing the failure probabilities of the causal factors and their contribution to collision likelihood. It may also be useful in developing a collision monitoring system that provides a real-time estimate of collision probability. The estimated probability could be used as an early warning for potential collisions, thus enhancing safe navigation and safety at sea.
机译:由于冰的存在,天气的快速变化,能见度的降低和偏远,北极水域的海上运输存在风险。破冰船援助和护航队被用来促进穿越北极水域的商船的安全航行。护航期间,个别船只之间或船只与破冰船之间的碰撞是潜在的危险。为了研究这种风险,本文提出了一种更新的Nagel-Schrekenberg(NaSch)模型,该模型结合了基于贝叶斯网络(BN)的概率方法。该方法已用于预测交通安全流的最大水路密度以及车队期间的碰撞概率。该方法在Vilkitskii海峡的护卫舰上进行了测试。这里提出的BN模型可以帮助评估因果因素的失效概率及其对碰撞可能性的影响。在开发提供实时估计碰撞概率的碰撞监控系统中,它可能也很有用。估计的概率可以用作潜在碰撞的预警,从而增强安全航行和海上安全。

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