SNAT: Simulation-based search for navigation safety. The case of Singapore Strait

Xingyi Chen, Giulia Pedrielli, S. Ng
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引用次数: 2

Abstract

As the bottleneck of the shipping routes from the Indian Ocean to the Pacific Ocean, the Singapore Strait is handling high daily traffic volume. In order to enhance navigational safety and reduce collisions at sea, several approaches have been proposed. However, most of the contributions adopt deterministic algorithms, failing to consider the stochasticity due to human behaviors of ship captains. Moreover, the effectiveness of these approaches is hindered by the fact that their focus is on providing a globally optimal safe set of trajectories to all vessels involved in encounter situations, almost neglecting each captain's perspective. We propose Safe Navigation Assistance Tool (SNAT), a simulation-based search algorithm to assist the captain by suggesting highly safe and robust maneuver strategies for conflict avoidance. Extensive numerical experimentation were performed proving the effectiveness of SNAT in reducing the number of conflicts, with respect to real data provided by the Automatic Identification System (AIS).
SNAT:基于模拟的导航安全搜索。新加坡海峡的例子
新加坡海峡是印度洋到太平洋航线的瓶颈,每天的交通量很大。为了提高航行安全和减少海上碰撞,人们提出了几种方法。然而,大多数贡献采用确定性算法,没有考虑由于船长的人类行为而产生的随机性。此外,这些方法的有效性受到以下事实的阻碍:它们的重点是为所有涉及遇到情况的船只提供全局最优安全轨迹集,几乎忽略了每个船长的观点。我们提出了安全导航辅助工具(SNAT),这是一种基于仿真的搜索算法,通过建议高度安全和鲁棒的机动策略来帮助船长避免冲突。针对自动识别系统(AIS)提供的实际数据,进行了大量的数值实验,证明了SNAT在减少冲突数量方面的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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