Travel Time Model for Shuttle-Based Storage and Retrieval Systems
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Date
2015-01-14
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Springer London Ltd
Open Access Color
Green Open Access
No
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Publicly Funded
No
Abstract
This paper presents analytical travel time model for the computation of travel (cycle) time for shuttle-based storage and retrieval systems (in continuation SBS/RS). The proposed model considers the operating characteristics of the elevators lifting table and the shuttle carrier, such as acceleration and deceleration and the maximum velocity. Assuming uniform distributed storage rack locations and using the probability theory, the expressions of the cumulative distribution functions with which the mean travel time is calculated, have been determined. The proposed model enables the calculation of the mean travel (cycle) time for the single and dual command cycles, from which the performance of SBS/RS can be evaluated. The approximation model and a simulation model of SBS/RS have been used to compare the performances of the proposed analytical travel time model. The analysis shows that regarding all examined types of SBS/RS, the results of proposed analytical travel time model for SBS/RS correlate with the results of simulation models of SBS/RS.
Description
Keywords
Automated warehouses, Shuttle-based storage and retrieval systems, Tier-captive system, Analytical modelling, Simulation, Autonomous Vehicle Storage, Design, Warehouses, Analytical modelling, Shuttle-based storage and retrieval systems, Tier-captive system, Simulation, Automated warehouses, Automated warehouses; Shuttle-based storage and retrieval systems; Tier-captive system; Analytical modelling; Simulation
Fields of Science
0209 industrial biotechnology, 0211 other engineering and technologies, 02 engineering and technology
Citation
WoS Q
Q2
Scopus Q
Q2

OpenCitations Citation Count
102
Source
Internatıonal Journal of Advanced Manufacturıng Technology
Volume
78
Issue
9.Ara
Start Page
1705
End Page
1725
PlumX Metrics
Citations
CrossRef : 34
Scopus : 126
Captures
Mendeley Readers : 42
SCOPUS™ Citations
126
checked on Apr 28, 2026
Web of Science™ Citations
92
checked on Apr 28, 2026
Page Views
1
checked on Apr 28, 2026
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