Journal of System Simulation
Abstract
Abstract: Reasonable arrangement of distribution route of fresh agricultural product can effectively guarantee the freshness of products, improve the distribution efficiency, and reduce the distribution cost. In practical distribution, the road condition is an important factor affecting the arrangement of the distribution route. According to the different road conditions, the speed characteristic models are set up. Meanwhile, considering the perishable and vulnerable characteristics of fresh agricultural products, the function of time window penalty cost and the function of customer satisfaction are established. Based on the comprehensive consideration of factors, such as road condition, time window and fresh consumption, a multi-objective optimization model of fresh agricultural product distribution route is constructed, which minimizes distribution cost and maximizes customer satisfaction. Motivated by simulated annealing thinking, an improved adaptive genetic algorithm is proposed. The feasibility and effectiveness of the constructed model and the proposed algorithm are verified by simulation experiments.
Recommended Citation
Heng, Wang; Xu, Yaxing; Wang, Zhenfeng; Zhou, Tianpeng; and Tian, Dechun
(2019)
"Distribution Routing Optimization of Fresh Agricultural Products Based on Road Conditions,"
Journal of System Simulation: Vol. 31:
Iss.
1, Article 17.
DOI: 10.16182/j.issn1004731x.joss.18-0161
Available at:
https://dc-china-simulation.researchcommons.org/journal/vol31/iss1/17
First Page
126
Revised Date
2018-08-27
DOI Link
https://doi.org/10.16182/j.issn1004731x.joss.18-0161
Last Page
135
CLC
TP391.9
Recommended Citation
Wang Heng, Xu Yaxing, Wang Zhenfeng, Zhou Tianpeng, Tian Dechun. Distribution Routing Optimization of Fresh Agricultural Products Based on Road Conditions[J]. Journal of System Simulation, 2019, 31(1): 126-135.
DOI
10.16182/j.issn1004731x.joss.18-0161
Included in
Artificial Intelligence and Robotics Commons, Computer Engineering Commons, Numerical Analysis and Scientific Computing Commons, Operations Research, Systems Engineering and Industrial Engineering Commons, Systems Science Commons