采用分析与统计相结合的方法来定义多边形船舶域,反映人类对危险区域估计的经验

Gia Huy Dinh , Nam-kyun Im
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引用次数: 39

摘要

本文从多边形目标船域的概念出发,提出了一种新的避碰方法。自上个世纪以来,我们见证了当前典型船舶领域的分类和描述。在该命题中,首先,域是一种几何方式,在分析方法和统计方法中同时使用,从而具有实际应用和仿真意义。其次,将“阻塞区”和“动作区”两个分开的部分结合起来,将该区域应用到目标船舶上,以定义船舶必须停留在外部的区域以及如何产生避免碰撞的动作。第三,该概念提出了不同接近遭遇的数学模型数量,包括正面,超车和交叉情况。最后,提出了确定区域大小的船舶转弯半径参数。统计数据表明,这种方法反映了船员在操纵中的真实习惯和心理。因此,简单域的形状像水手的想象,但计算边界更准确。为自动避碰提供了一种有效的解决方案。本文接下来的研究在寻找避免碰撞的最短路径方面取得了积极的成果。此外,经典研究在使用统计方法的同时,在不同领域的广泛应用中面临着一个严重的问题,这一概念可以为广泛应用提供有益的解决方案。通过对以往研究的众多船舶领域进行比较,指出新方法在实践中的简化和有效性。
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The combination of analytical and statistical method to define polygonal ship domain and reflect human experiences in estimating dangerous area

The paper suggests a new method of collision avoidance stemming from the concept of the polygonal target ship domain. Since the last century, we have witnessed the current typical ship domains classified and described. In this proposition, firstly, the domain is a geometrical manner which is used in both analytical and statistical method, resulting in the signification of practical application and simulation. Secondly, such domain will be applied to target ship under the combination of two separated parts: “Blocking area” and “Action area” in order to define the area where the ship must keep outside and how the actions to avoid collision can be generated. Thirdly, the concept has suggested the number of mathematical models for different approaching encounters, including head-on, overtaking and crossing situation. Finally, the parameters of turning circle of the ship can be proposed in determining the size of the domain. Statistical evidences indicate that this method reflects a crew's real habit and psychological in maneuvering. As the result, simple domain is shaped like imagination of sailors, but more accurate in calculating boundary. It promises an effective solution for automatic collision avoidance method. The next researches of this paper have achieved positive results in finding shortest route for avoiding collision. Moreover, while using statistical methods, classical researches face a serious problem in a wide application with different areas, this concept can make up a beneficial solution for the popular application. The numerous ship domains which are in previous researches will be carried out to compare and point out the simplification and effectiveness of the new method in practice.

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