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用于高效固体废物收集和路线优化的CVRP模型中的回溯搜索算法。

Backtracking search algorithm in CVRP models for efficient solid waste collection and route optimization.

作者信息

Akhtar Mahmuda, Hannan M A, Begum R A, Basri Hassan, Scavino Edgar

机构信息

Dept of Civil & Structural Engineering, Universiti Kebangsaan Malaysia, 43600 Bangi, Malaysia.

Dept. of Electrical Power Engineering, College of Engineering, Universiti Tenaga Nasional, 43000 Kajang, Malaysia.

出版信息

Waste Manag. 2017 Mar;61:117-128. doi: 10.1016/j.wasman.2017.01.022. Epub 2017 Jan 30.

Abstract

Waste collection is an important part of waste management that involves different issues, including environmental, economic, and social, among others. Waste collection optimization can reduce the waste collection budget and environmental emissions by reducing the collection route distance. This paper presents a modified Backtracking Search Algorithm (BSA) in capacitated vehicle routing problem (CVRP) models with the smart bin concept to find the best optimized waste collection route solutions. The objective function minimizes the sum of the waste collection route distances. The study introduces the concept of the threshold waste level (TWL) of waste bins to reduce the number of bins to be emptied by finding an optimal range, thus minimizing the distance. A scheduling model is also introduced to compare the feasibility of the proposed model with that of the conventional collection system in terms of travel distance, collected waste, fuel consumption, fuel cost, efficiency and CO emission. The optimal TWL was found to be between 70% and 75% of the fill level of waste collection nodes and had the maximum tightness value for different problem cases. The obtained results for four days show a 36.80% distance reduction for 91.40% of the total waste collection, which eventually increases the average waste collection efficiency by 36.78% and reduces the fuel consumption, fuel cost and CO emission by 50%, 47.77% and 44.68%, respectively. Thus, the proposed optimization model can be considered a viable tool for optimizing waste collection routes to reduce economic costs and environmental impacts.

摘要

垃圾收集是废物管理的重要组成部分,涉及不同问题,包括环境、经济和社会等方面。通过减少收集路线距离,垃圾收集优化可以降低垃圾收集预算和环境排放。本文提出了一种改进的回溯搜索算法(BSA),用于带智能垃圾桶概念的容量车辆路径问题(CVRP)模型,以找到最佳优化的垃圾收集路线解决方案。目标函数使垃圾收集路线距离之和最小化。该研究引入了垃圾桶阈值废物水平(TWL)的概念,通过找到最佳范围来减少需要清空的垃圾桶数量,从而最小化距离。还引入了一个调度模型,以便在行驶距离、收集的垃圾、燃料消耗、燃料成本、效率和一氧化碳排放方面,将所提出模型的可行性与传统收集系统的可行性进行比较。发现最佳TWL在垃圾收集节点填充水平的70%至75%之间,并且在不同问题情况下具有最大紧密度值。四天的所得结果表明,对于91.40%的总垃圾收集量,距离减少了36.80%,最终平均垃圾收集效率提高了36.78%,燃料消耗、燃料成本和一氧化碳排放分别减少了50%、47.77%和44.68%。因此,所提出的优化模型可被视为优化垃圾收集路线以降低经济成本和环境影响的可行工具。

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