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Velocity obstacle algorithms for collision prevention at sea

机译:防止海上碰撞的速度障碍算法

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摘要

It is of critical importance to prevent collisions at sea for navigation safety. Some popular techniques have been proposed and been used in practice, e.g. closest point of approach, collision threat parameters area, etc. However, most of these techniques assume that the target ship keeps a constant velocity which is unrealistic and may easily lead to a false alarm. In this article, Velocity Obstacle (VO) algorithms are applied to support collision avoidance with target ships whose trajectories are non-linear (with time-dependent velocities) and (probabilistically) predictable. In particular, Linear-VO, Non-Linear VO, and Probabilistic VO algorithms are used for this purpose. Compared to traditional approaches, these algorithms are capable of detecting collision dangers with target ships sailing non-linearly and (probabilistically) predictably, finding collision-free velocities in multi-ship scenarios, and preventing collisions. Two scenarios are designed to demonstrate the performance of VO algorithms. The results show that the proposed VO algorithms can facilitate collision detection and offer proper collision-free solutions for ships.
机译:对于航行安全而言,防止海上碰撞至关重要。已经提出并在实践中使用了一些流行的技术,例如。但是,大多数这些技术都假定目标船保持恒定的速度,这是不现实的,并且很容易导致误报。在本文中,使用速度障碍(VO)算法来支持避免目标舰船的碰撞,这些目标舰船的轨迹是非线性的(具有随时间变化的速度)并且(可能)是可预测的。特别地,线性VO,非线性VO和概率VO算法用于此目的。与传统方法相比,这些算法能够检测与非线性航行(概率性)的目标船的碰撞危险,在多船场景中找到无碰撞速度,并防止碰撞。设计了两种方案来演示VO算法的性能。结果表明,提出的VO算法可以促进碰撞检测,并为船舶提供适当的无碰撞解决方案。

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