无人机
航程(航空)
计算机科学
服务(商务)
布线(电子设计自动化)
启发式
位置模型
计算机网络
实时计算
模拟
运筹学
工程类
航空航天工程
遗传学
生物
经济
人工智能
经济
作者
Insu Hong,Michael Kuby,Alan T. Murray
标识
DOI:10.1016/j.trc.2018.02.017
摘要
Unmanned Aerial Vehicles (UAVs) are attracting significant interest for delivery service of small packages in urban areas. The limited flight range of electric drones powered by batteries or fuel cells requires refueling or recharging stations for extending coverage to a wider area. To develop such service, optimization methods are needed for designing a network of station locations and delivery routes. Unlike ground-transportation modes, however, UAVs do not follow a fixed network but rather can fly directly through continuous space. But, paths must avoid barriers and other obstacles. In this paper, we propose a new location model to support spatially configuring a system of recharging stations for commercial drone delivery service, drawing on literature from planar-space routing, range-restricted flow-refueling location, and maximal coverage location. We present a mixed-integer programming formulation and an efficient heuristic algorithm, along with results for a large case study of Phoenix, AZ to demonstrate the effectiveness and efficiency of the model.
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