OPTIMIZING UNMANNED AERIAL VEHICLE BASED FOOD DELIVERY THROUGH VEHICLE ROUTING PROBLEM: A COMPARATIVE ANALYSIS OF THREE DELIVERY SYSTEMS.

Q3 Economics, Econometrics and Finance Applied Computer Science Pub Date : 2024-03-30 DOI:10.35784/acs-2024-06
Rumesh Edirimanne, W. M. Fernando, Peter Nielsen, H. N. Perera, Amila Thibbotuwawa
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Abstract

In recent times, there has been a notable increase in interest surrounding the integration of Un-manned Aerial Vehicle (UAV) technology and vehicle routing problems (VRP) for package delivery purposes. While existing studies have explored various types of package deliveries utilizing VRP, limited attention has been given to on-demand food delivery. This study aims to develop a VRP model that incorporates practical constraints such as payload capacity and maximum flying range, with the primary objective of minimizing travel distance in food delivery operations. A comparative analysis is conducted among three delivery methods, including UAV delivery, to determine the most effective approach and assess the feasibility of each method. Through a case study analysis focused on a pizza delivery service in Sri Lanka, it was observed that implementing VRP in a motorbike delivery system resulted in reduced travel distance, time, cost, and CO2 emissions compared to the existing delivery system. Furthermore, the utilization of UAVs in conjunction with VRP yielded even greater improvements across all parameters. Based on a comprehensive cost analysis considering long-term operations, the UAV-based delivery system was identified as the most cost-effective method, followed by the VRP-incorporated motorbike delivery method. Although the VRP-incorporated motorbike delivery system exhibited a slightly higher average time per route compared to the existing method, the total travel time required to complete all routes remained lower. Consequently, the study concludes that the VRP-incorporated motorbike delivery system outperforms the existing delivery method for food delivery, with the use of UAVs incorporating VRP identified as the optimal delivery method among the three alternatives. The findings contribute valuable insights to the optimization of food delivery logistics, emphasizing the potential of VRP and exploring the feasibility of UAVs for sustainable and efficient long-term delivery solutions.
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通过车辆路由问题优化基于无人飞行器的食品配送:三种配送系统的比较分析。
近来,人们对将无人驾驶飞行器(UAV)技术与车辆路由问题(VRP)整合用于包裹递送的兴趣明显增加。虽然现有研究已经利用 VRP 探索了各种类型的包裹递送,但对按需食品递送的关注还很有限。本研究旨在开发一个 VRP 模型,该模型结合了有效载荷能力和最大飞行距离等实际约束条件,其主要目标是最大限度地减少食品配送业务中的飞行距离。本研究对包括无人机送餐在内的三种送餐方法进行了比较分析,以确定最有效的方法,并评估每种方法的可行性。通过对斯里兰卡一家披萨外送服务公司的案例研究分析发现,与现有的外送系统相比,在摩托车外送系统中实施 VRP 可以减少路程、时间、成本和二氧化碳排放量。此外,将无人机与 VRP 结合使用,在所有参数方面都取得了更大的改进。根据考虑到长期运营的综合成本分析,无人机运送系统被认为是最具成本效益的方法,其次是结合 VRP 的摩托车运送方法。虽然与现有方法相比,采用自愿者资源计划的摩托车送货系统每条路线的平均时间略高,但完成所有路线所需的总行程时间仍然较短。因此,该研究得出结论,在食品配送方面,包含 VRP 的摩托车配送系统优于现有的配送方法,而使用包含 VRP 的无人机则被确定为三种替代方案中的最佳配送方法。研究结果为优化食品配送物流提供了有价值的见解,强调了 VRP 的潜力,并探讨了无人机作为可持续、高效的长期配送解决方案的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Computer Science
Applied Computer Science Engineering-Industrial and Manufacturing Engineering
CiteScore
1.50
自引率
0.00%
发文量
0
审稿时长
8 weeks
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