Your browser doesn't support javascript.
loading
Solving pickup and drop-off problem using hybrid pointer networks with deep reinforcement learning.
Alharbi, Majed G; Stohy, Ahmed; Elhenawy, Mohammed; Masoud, Mahmoud; Khalifa, Hamiden Abd El-Wahed.
Affiliation
  • Alharbi MG; Department of Mathematics, College of Science and Arts, Qassim University, Al Mithnab, Saudi Arabia.
  • Stohy A; Department of Electrical Engineering, School of Engineering and Technology, Badr University in Cairo (BUC), Cairo, Egypt.
  • Elhenawy M; Centre for Accident Research and Road Safety, Queensland University of Technology, Brisbane, Australia.
  • Masoud M; Centre for Accident Research and Road Safety, Queensland University of Technology, Brisbane, Australia.
  • Khalifa HAE; Department of Mathematics, College of Science and Arts, Qassim University, Al-Badaya, Saudi Arabia.
PLoS One ; 17(5): e0267199, 2022.
Article in En | MEDLINE | ID: mdl-35617306
ABSTRACT
In this study, we propose a general method for tackling the Pickup and Drop-off Problem (PDP) using Hybrid Pointer Networks (HPNs) and Deep Reinforcement Learning (DRL). Our aim is to reduce the overall tour length traveled by an agent while remaining within the truck's capacity restrictions and adhering to the node-to-node relationship. In such instances, the agent does not allow any drop-off points to be serviced if the truck is empty; conversely, if the vehicle is full, the agent does not allow any products to be picked up from pickup points. In our approach, this challenge is solved using machine learning-based models. Using HPNs as our primary model allows us to gain insight and tackle more complicated node interactions, which simplified our objective to obtaining state-of-art outcomes. Our experimental results demonstrate the effectiveness of the proposed neural network, as we achieve the state-of-art results for this problem as compared with the existing models. We deal with two types of demand patterns in a single type commodity problem. In the first pattern, all demands are assumed to sum up to zero (i.e., we have an equal number of backup and drop-off items). In the second pattern, we have an unequal number of backup and drop-off items, which is close to practical application, such as bike sharing system rebalancing. Our data, models, and code are publicly available at Solving Pickup and Dropoff Problem Using Hybrid Pointer Networks with Deep Reinforcement Learning.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: High Pressure Neurological Syndrome Limits: Humans Language: En Journal: PLoS One Journal subject: CIENCIA / MEDICINA Year: 2022 Document type: Article Affiliation country: Saudi Arabia

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: High Pressure Neurological Syndrome Limits: Humans Language: En Journal: PLoS One Journal subject: CIENCIA / MEDICINA Year: 2022 Document type: Article Affiliation country: Saudi Arabia