Simulation of the SLP Methodology to Improve the Productivity of the Peruvian Textile Sector

Daniel Gerardo Saenz Tinoco, Britney Darlene Marcos Silva, Angie Kiara Flores Vargas, Sario Angel Chamorro Quijano, Ruben Dario Arzapalo Bello

Research output: Chapter in Book/ReportConference contributionpeer-review

Abstract

The Systematic Layout Panning Methodology (SLP) is the most used for its capacity of an optimized design in the work areas towards the delay of the productive process. This research develops and evaluates a plant design model for micro and small companies in the Peruvian textile sector, allowing the redesign of work areas to obtain a higher production. The model was made by obtaining the required measures of each area and timing the production time that takes each product, using the three phases of the SLP methodology, then it was simulated in FlexSim software. The answer provided in the investigation, comparing how many garments are produced with the previous plant design and with the new process using the SLP methodology, shows that there is a significant improvement in productivity of 12% additional at the time of the simulation, the time was reduced from 23.5 minutes to 21.11 minutes, and production increased from 146 to 162 sweaters per employee showing that the SLP methodology improves productivity and reduces distribution problems in the plant.

Original languageAmerican English
Title of host publicationProceedings of the 2023 10th International Conference on Industrial Engineering and Applications, ICIEA-EU 2023
PublisherAssociation for Computing Machinery
Pages135-139
Number of pages5
ISBN (Electronic)9781450398527
DOIs
StateIndexed - 9 Jan 2023
Event10th International Conference on Industrial Engineering and Applications, ICIEA-EU 2023 - Rome, Italy
Duration: 9 Jan 202311 Jan 2023

Publication series

NameACM International Conference Proceeding Series

Conference

Conference10th International Conference on Industrial Engineering and Applications, ICIEA-EU 2023
Country/TerritoryItaly
CityRome
Period9/01/2311/01/23

Bibliographical note

Publisher Copyright:
© 2023 ACM.

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