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Optimal in-field routing for full and partial field coverage with arbitrary non-convex fields and multiple obstacle areas

机译:具有任意非凸面和多个障碍区域的完整和部分场覆盖的最佳现场路由

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Within the context of optimising the logistics in agriculture this paper relates to optimal in- field routing for full and partial field coverage with arbitrary non-convex fields and multiple obstacle areas. It is distinguished between nine different in-field routing tasks: two for full- field coverage, seven for partial-field coverage and one for shortest path planning between any two vertices of the transition graph. It differentiates between equal or different start and end vertices for a task, coverage of only a subset of vertices, and a subset of edges or combinations. The proposed methods are developed primarily for applying sprays and fertilisers with larger operating widths and with fields where there is unique headland path. Partial field coverage where, e.g., only a specific subset of edges has to be covered is relevant for precision agriculture and also for optimised logistical operation of smaller- sized machinery with limited loading capacities. The result of this research is the proposition of two compatible algorithms for optimal full and partial field coverage path planning, respectively. These are evaluated on three real-world fields to demonstrate their characteristics and computational efficiency. (C) 2019 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:在优化农业物流的背景下,本文涉及具有任意非凸面和多个障碍区域的完整和部分现场覆盖的最佳现场路由。它在九个不同的现场路由任务之间区分:两个用于全场覆盖范围,七个用于部分场覆盖,一个用于转换图的任何两个顶点之间的最短路径规划。它区分了一个任务的等于或不同的开始和结束顶点,仅覆盖顶点的子集,以及边缘或组合的子集。所提出的方法主要用于应用具有较大工作宽度的喷雾和肥料以及具有独特岬角路径的田地。部分场覆盖范围,例如,必须仅覆盖特定边缘的特定边缘与精密农业以及具有限制电容有限的较小机械的优化后勤操作。该研究的结果是分别提出了两个兼容算法,分别用于最佳的全部和部分现场覆盖路径规划。这些是在三个真实领域进​​行评估,以展示其特征和计算效率。 (c)2019年IAGRE。 elsevier有限公司出版。保留所有权利。

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