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首页> 外文期刊>Advances in Mechanical Engineering >Combining turning point detection and Dijkstra’s algorithm to search the shortest path:
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Combining turning point detection and Dijkstra’s algorithm to search the shortest path:

机译:结合拐点检测和Dijkstra的算法来搜索最短路径:

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摘要

In this study, image processing was combined with path-planning object-avoidance technology to determine the shortest path to the destination. The content of this article comprises two parts: in the first part, image processing was used to establish a model of obstacle distribution in the environment, and boundary sequence permutation method was used to conduct orderly arrangement of edge point coordinates of all objects, to determine linking relationship between each edge point, and to individually classify objects in the image. Then, turning point detection method was used to compare the angle size between vectors before and after each edge point and to determine vertex coordinates of polygonal obstacles. In the second part, a modified Dijkstra’s algorithm was used to turn vertices of convex-shaped obstacles into network nodes, to determine the shortest path by a cost function, and to find an obstacle avoidance path connecting the start and end points. In order to verify the feasibility of the proposed ...
机译:在这项研究中,图像处理与路径规划对象规避技术相结合,以确定到达目的地的最短路径。本文的内容包括两部分:第一部分,通过图像处理建立环境中障碍物分布模型,边界序列置换方法对所有物体的边缘点坐标进行有序排列,确定每个边缘点之间的链接关系,并分别对图像中的对象进行分类。然后,使用拐点检测方法比较每个边缘点前后的向量之间的角度大小,并确定多边形障碍物的顶点坐标。在第二部分中,使用改良的Dijkstra算法将凸形障碍物的顶点转换为网络节点,通过成本函数确定最短路径,并找到连接起点和终点的避障路径。为了验证提议的可行性...

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