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首页> 外文期刊>Arabian journal of geosciences >A new algorithm to consider critical length of grades in raster-based least-cost path analysis
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A new algorithm to consider critical length of grades in raster-based least-cost path analysis

机译:一种新的算法考虑基于光栅的最低成本路径分析中的临界长度

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摘要

A new raster-based least-cost path analysis algorithm is proposed in this article that considers the critical length of grades as a parameter-governing factor that ascertains whether a path is traversable in hilly terrains. Our proposed algorithm uses a speed prediction model to predict the speed of trucks after each path segment based on an initial speed, gradient value, and length of the segment. We also consider earthwork operations, slope thresholds, and moving-window models. After applying the proposed algorithm to real-world data, a traversable path is obtained; previous studies cannot guarantee such a capability. By comparing this proposed algorithm with the latest least-cost path algorithm, we found that it offers a longer path in upward slopes to compensate for the speed of trucks. Speed profiles also reveal that trucks cannot traverse paths suggested by the existing algorithm in hilly terrains, and they stop in the middle of the road. However, in the proposed algorithm, vehicles traverse the path while compensating for speed on upward slopes. This algorithm can be used by road designers in GIS software.
机译:在本文中提出了一种基于栅格的最低成本路径分析算法,该算法将临界程度视为参数管理因素,以确定是否在丘陵地形中遍历路径。我们所提出的算法使用速度预测模型,以基于初始速度,梯度值和段的长度来预测卡车的速度。我们还考虑地球运算,斜率阈值和移动窗口模型。在将建议的算法应用于现实世界数据之后,获得了一种可遍历的路径;以前的研究无法保证这种能力。通过将该算法与最新的最低成本路径算法进行比较,我们发现它提供了向上斜坡的更长路径,以补偿卡车的速度。速度概况还揭示了卡车不能在丘陵地形中现有算法建议的路径,他们在道路中间停止。然而,在所提出的算法中,车辆遍历路径,同时补偿向上斜坡的速度。该算法可以通过GIS软件的道路设计师使用。

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