A non-linear program to find an approximate location of a second warehouse: A case study

A mathematical model was developed to estimate the location of a second warehouse for a case study in Bangkok. A non-linear program was developed based on the Load Distance Technique. The objective function was to minimize the sum of weighted straight-line distances from the first or second warehous...

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Main Author: Chumpol Monthatipkul
Format: Article
Language:English
Published: Elsevier 2016-09-01
Series:Kasetsart Journal of Social Sciences
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2452315116300297
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spelling doaj-bf241a0c71b74a788adc6b06541431cf2020-11-24T22:35:53ZengElsevierKasetsart Journal of Social Sciences2452-31512016-09-0137319020110.1016/j.kjss.2016.08.007A non-linear program to find an approximate location of a second warehouse: A case studyChumpol MonthatipkulA mathematical model was developed to estimate the location of a second warehouse for a case study in Bangkok. A non-linear program was developed based on the Load Distance Technique. The objective function was to minimize the sum of weighted straight-line distances from the first or second warehouse to either vendors or customers. The straight-line distance was determined using the principle of Pythagorean triples and was weighted by the shipment frequency and the shipment cost rate. The model was then solved using the Microsoft Excel Solver upgraded to the Premium Solver Platform. The starting solutions were randomly set within a specified range to obtain different local optimal solutions. The best one was finally selected to be the approximate location of the second warehouse. Sensitivity to customer demands was conducted and some useful recommendations are provided.http://www.sciencedirect.com/science/article/pii/S2452315116300297Euclidean normfacility locationnon-linear programming
collection DOAJ
language English
format Article
sources DOAJ
author Chumpol Monthatipkul
spellingShingle Chumpol Monthatipkul
A non-linear program to find an approximate location of a second warehouse: A case study
Kasetsart Journal of Social Sciences
Euclidean norm
facility location
non-linear programming
author_facet Chumpol Monthatipkul
author_sort Chumpol Monthatipkul
title A non-linear program to find an approximate location of a second warehouse: A case study
title_short A non-linear program to find an approximate location of a second warehouse: A case study
title_full A non-linear program to find an approximate location of a second warehouse: A case study
title_fullStr A non-linear program to find an approximate location of a second warehouse: A case study
title_full_unstemmed A non-linear program to find an approximate location of a second warehouse: A case study
title_sort non-linear program to find an approximate location of a second warehouse: a case study
publisher Elsevier
series Kasetsart Journal of Social Sciences
issn 2452-3151
publishDate 2016-09-01
description A mathematical model was developed to estimate the location of a second warehouse for a case study in Bangkok. A non-linear program was developed based on the Load Distance Technique. The objective function was to minimize the sum of weighted straight-line distances from the first or second warehouse to either vendors or customers. The straight-line distance was determined using the principle of Pythagorean triples and was weighted by the shipment frequency and the shipment cost rate. The model was then solved using the Microsoft Excel Solver upgraded to the Premium Solver Platform. The starting solutions were randomly set within a specified range to obtain different local optimal solutions. The best one was finally selected to be the approximate location of the second warehouse. Sensitivity to customer demands was conducted and some useful recommendations are provided.
topic Euclidean norm
facility location
non-linear programming
url http://www.sciencedirect.com/science/article/pii/S2452315116300297
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