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Development and application of an iterative heuristic for roadway snow and ice control

机译:道路雪和冰控制迭代启发式的开发与应用

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摘要

Many states in the U.S. have experienced increased demand for roadway snow and ice control (RSIC) operations due to an increase in extreme winter weather. As the number and severity of extreme weather events increases, the costs associated with winter roadway maintenance materials, plow operator time, equipment maintenance and replacement, and fuel use will also increase. In this paper, we introduce a unique heuristic procedure which we combine with real-world operational constraints to advance both the modeling and practical application of RSIC operations by incorporating a continuous measure of priority into a sequenced, iterative heuristic for network clustering, vehicle allocation, and capacitated vehicle routing. The heuristic balances the competing objectives of minimizing the total vehicle hours traveled for the fleet and minimizing the total time required to service the most critical links in the roadway network, while ensuring that the entire fleet is put to use. We also introduce a new measure of route-system performance, which is based on an effective link length (adjusted for how critical the link is to the performance of the entire system) and the time it takes to service the most critical links. We demonstrate the approach in practice by running five different applications of the heuristic on the statewide roadway network in Vermont. We demonstrate conclusively that our heuristic is effective for servicing the most critical links in the network in the least amount of time. We show that our more advanced vehicle allocation methods result in more effective RSIC service operations than adding vehicles to the fleet.
机译:美国的许多州由于极端冬季天气的增加而导致道路雪和冰控制(RSIC)业务的需求增加。随着极端天气事件的数量和严重程度的增加,与冬季道路维护材料相关的成本,犁操作员时间,设备维护和更换,以及燃料使用也将增加。在本文中,我们介绍了一个独特的启发式程序,我们将与现实世界的操作系统结合起来,通过将连续的优先级的优先级纳入测序的网络聚类,车辆分配的迭代启发式来推进RSIC操作的建模和实际应用。和电容式车辆路由。启发式余额使竞争目标最大限度地减少为船队进行的总车间,并尽量减少为道路网络中最关键的链接提供服务所需的总时间,同时确保整个舰队进行使用。我们还介绍了一种新的路线系统性能,基于有效的链路长度(调整链路对整个系统性能的关键方式)以及为维修最关键的链接所需的时间。我们通过在佛蒙特州州际巷道网络上运行五种不同应用,在实践中展示了这种方法。我们认为,我们的启发式是有效的,即在最少的时间内为网络中最关键的链接提供服务。我们表明,我们更先进的车辆分配方法导致更有效的RSIC服务操作,而不是向舰队添加车辆。

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