A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands

Crop harvesting and transportation should be considered as an integrated system to be optimized aiming to reduce the total operational costs. However, current studies mainly focused on how to reduce operational cost for a link, not from integrated perspective. In this paper, a joint problem which co...

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Main Authors: P. He, J. Li
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2021-03-01
Series:Information Processing in Agriculture
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214317319302367
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spelling doaj-f8053481223a431ca1d2bdaf666f77642021-03-11T04:24:53ZengKeAi Communications Co., Ltd.Information Processing in Agriculture2214-31732021-03-0181114A joint optimization framework for wheat harvesting and transportation considering fragmental farmlandsP. He0J. Li1Faculty of Engineering, Nanjing Agricultural University, Nanjing 210031, PR ChinaCorresponding author.; Faculty of Engineering, Nanjing Agricultural University, Nanjing 210031, PR ChinaCrop harvesting and transportation should be considered as an integrated system to be optimized aiming to reduce the total operational costs. However, current studies mainly focused on how to reduce operational cost for a link, not from integrated perspective. In this paper, a joint problem which consists of harvesting and transportation problem is implemented and optimized to meet the better schedule with less operational costs. The harvesting and transportation problems could respectively be considered as a vehicle routing problem with multiple trips and a transportation problem,. These two problems should be optimized jointly because combine-harvesters and transporters should be synchronized at fragmental farmlands. A mixed integer programming is employed considering all constraints arising in the joint optimized framework. Furthermore, a hybrid algorithm is presented to find an optimum solution for this problem. Five different cases are used to verify the performance of the hybrid algorithm. Besides, our real cases are used to prove that there is a significant improvement if the integrated wheat harvesting and transportation policy is adopted. The results indicate that the model and algorithm is an effective approach to help farmers to decrease reaping costs.http://www.sciencedirect.com/science/article/pii/S2214317319302367WheatHarvesting and transportationVehicle routingMixed integer programming
collection DOAJ
language English
format Article
sources DOAJ
author P. He
J. Li
spellingShingle P. He
J. Li
A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
Information Processing in Agriculture
Wheat
Harvesting and transportation
Vehicle routing
Mixed integer programming
author_facet P. He
J. Li
author_sort P. He
title A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
title_short A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
title_full A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
title_fullStr A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
title_full_unstemmed A joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
title_sort joint optimization framework for wheat harvesting and transportation considering fragmental farmlands
publisher KeAi Communications Co., Ltd.
series Information Processing in Agriculture
issn 2214-3173
publishDate 2021-03-01
description Crop harvesting and transportation should be considered as an integrated system to be optimized aiming to reduce the total operational costs. However, current studies mainly focused on how to reduce operational cost for a link, not from integrated perspective. In this paper, a joint problem which consists of harvesting and transportation problem is implemented and optimized to meet the better schedule with less operational costs. The harvesting and transportation problems could respectively be considered as a vehicle routing problem with multiple trips and a transportation problem,. These two problems should be optimized jointly because combine-harvesters and transporters should be synchronized at fragmental farmlands. A mixed integer programming is employed considering all constraints arising in the joint optimized framework. Furthermore, a hybrid algorithm is presented to find an optimum solution for this problem. Five different cases are used to verify the performance of the hybrid algorithm. Besides, our real cases are used to prove that there is a significant improvement if the integrated wheat harvesting and transportation policy is adopted. The results indicate that the model and algorithm is an effective approach to help farmers to decrease reaping costs.
topic Wheat
Harvesting and transportation
Vehicle routing
Mixed integer programming
url http://www.sciencedirect.com/science/article/pii/S2214317319302367
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