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Fields distinguished by edges and middles visited by heterogeneous vehicles to minimize non-working distances

机译:由异构车辆访问的边缘和中间区的田地,以最大限度地减少非工作距离

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y In rice-wheat rotation systems in China, all vehicles working in fields have to make turns because these fields are surrounded by canals on three sides. All fields can be divided into two parts - the middle and edges which include the head, tail, and two sides of the field. In general, a field's edge is visited only by a small vehicle because it has a lighter weight and the soil does not easily become compacted due to the vehicle's many turns and sideways cuts. In addition, workers in heavy vehicles cannot easily distinguish ridges and crops on the two sides of the fields. Therefore, heavy vehicles can only visit the middle after the edges of these fields have already been completely worked by small vehicles. A general framework including a bi-level programming model and a two-stage algorithm constructed by a tabu search is proposed to optimize the non-working distance in intra- and inter-fields for heterogeneous vehicles based on distinguishing a field's edges and middle. In the bi-level programming model, the lower level determines the small vehicles' routes and the middles of which fields will be visited by heavy vehicles, and the upper level determines the optimal routes for the heavy vehicles. Then, a case study is presented to verify the effectiveness and efficiency of the solution approach. The total non-working distance is reduced by 24.2%, a significant amount compared with the operational schedule on the farm. This study proposes a general framework for farmers to optimize the non-working distance for heterogeneous vehicles working in the edges and middles of fields.
机译:Y在中国的米饭轮转系统中,所有在田地工作的车辆都必须转弯,因为这些田地被三面的运河包围。所有字段都可以分为两个部分 - 中间和边缘,包括头部,尾部和场的两侧。通常,仅由小型车辆访问领域的边缘,因为它具有较轻的重量,并且由于车辆的许多转弯和侧向切割,土壤不容易被压实。此外,重型车辆的工人不能轻易区分山脊和庄稼在田地的两侧。因此,重型车辆只能在这些领域的边缘已经完全由小型车辆工作后访问中间。提出了一种包括双级编程模型和由禁忌搜索构造的两级算法的一般框架,以优化基于区分领域的边缘和中间的异构车辆的内部和场内的非工作距离。在双级编程模型中,较低级别确定了大型车辆的小型车辆和中间群体,其中大型车辆将访问哪个领域,上层决定了重型车辆的最佳路线。然后,提出了一个案例研究以验证解决方案方法的有效性和效率。与农场的运营时间表相比,总非工作距离减少了24.2%,与运营时间表相比。本研究提出了农民的一般框架,以优化在边缘和田地中工作的异质车辆的非工作距离。

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