Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization

The cross-aisles shuttle-based storage/retrieval system has not only storage function but also the sorting function and makes full use of warehouse space to achieve high-density storage. It uses “part-to-picker” order picking mode to respond quickly to orders and shorten sortin...

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Main Authors: Dong Yang, Yaohua Wu, Dengya Huo
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9424587/
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spelling doaj-3d3378dd24b148b1a7c65c7eba9e93d82021-05-11T23:00:47ZengIEEEIEEE Access2169-35362021-01-019677866779610.1109/ACCESS.2021.30779749424587Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm OptimizationDong Yang0https://orcid.org/0000-0003-0012-3783Yaohua Wu1https://orcid.org/0000-0002-5561-8049Dengya Huo2https://orcid.org/0000-0001-5088-9096School of Control Science and Engineering, Shandong University, Jinan, ChinaSchool of Control Science and Engineering, Shandong University, Jinan, ChinaSchool of Control Science and Engineering, Shandong University, Jinan, ChinaThe cross-aisles shuttle-based storage/retrieval system has not only storage function but also the sorting function and makes full use of warehouse space to achieve high-density storage. It uses “part-to-picker” order picking mode to respond quickly to orders and shorten sorting time. In this paper, through the analysis of the system, an effective evaluation method for the efficiency and time of system picking under a single instruction operation cycle is presented. The objective function of system minimum cost under the condition of satisfying customer’s demand is constructed. The objective function is solved by an improved particle swarm algorithm based on the optimized initial particle swarm optimization. By optimizing, we can find the optimal configuration of the system (i.e., the number of tiers, number of aisles and number of bays, number of picking stations, and number of lifts with minimal system cost). Finally, the impact of different configurations on system performance is summarized. This method can guide the design planner to design a more reasonable system under minimum cost control.https://ieeexplore.ieee.org/document/9424587/Shuttle-based storage/retrieval systemperformance analysissystem designpart-to-pickerimproved particle swarm optimization
collection DOAJ
language English
format Article
sources DOAJ
author Dong Yang
Yaohua Wu
Dengya Huo
spellingShingle Dong Yang
Yaohua Wu
Dengya Huo
Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization
IEEE Access
Shuttle-based storage/retrieval system
performance analysis
system design
part-to-picker
improved particle swarm optimization
author_facet Dong Yang
Yaohua Wu
Dengya Huo
author_sort Dong Yang
title Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization
title_short Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization
title_full Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization
title_fullStr Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization
title_full_unstemmed Research on Design of Cross-Aisles Shuttle-Based Storage/Retrieval System Based on Improved Particle Swarm Optimization
title_sort research on design of cross-aisles shuttle-based storage/retrieval system based on improved particle swarm optimization
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2021-01-01
description The cross-aisles shuttle-based storage/retrieval system has not only storage function but also the sorting function and makes full use of warehouse space to achieve high-density storage. It uses “part-to-picker” order picking mode to respond quickly to orders and shorten sorting time. In this paper, through the analysis of the system, an effective evaluation method for the efficiency and time of system picking under a single instruction operation cycle is presented. The objective function of system minimum cost under the condition of satisfying customer’s demand is constructed. The objective function is solved by an improved particle swarm algorithm based on the optimized initial particle swarm optimization. By optimizing, we can find the optimal configuration of the system (i.e., the number of tiers, number of aisles and number of bays, number of picking stations, and number of lifts with minimal system cost). Finally, the impact of different configurations on system performance is summarized. This method can guide the design planner to design a more reasonable system under minimum cost control.
topic Shuttle-based storage/retrieval system
performance analysis
system design
part-to-picker
improved particle swarm optimization
url https://ieeexplore.ieee.org/document/9424587/
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AT yaohuawu researchondesignofcrossaislesshuttlebasedstorageretrievalsystembasedonimprovedparticleswarmoptimization
AT dengyahuo researchondesignofcrossaislesshuttlebasedstorageretrievalsystembasedonimprovedparticleswarmoptimization
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