The production planning problem of orders in small foundries

Author:

Furtado Maria Gabriela S.ORCID,Camargo Victor C. B.ORCID,Toledo Franklina M. B.ORCID

Abstract

The production planning problem in market-driven foundries consists of determining the alloys to be melted and the items to be produced. A production plan is defined based on the foundry book order that compiles customer requests. Each customer order can be composed of items of different types and made from different alloys. In the literature, production planning does not usually consider the customers’ orders, i.e., items are independently handled. However, in practical situations, several orders cannot be partially delivered. An order can be delivered only when all of its items have been produced, which often results in delays in meeting the customer demands. Conversely, some orders may be split, which would incur delivering costs. This paper addresses the production planning problem of orders in market-driven foundries, which is considered a gap in the literature. A mathematical model and a relax-and-fix heuristic are proposed to address the problem. An experimental evaluation using synthetic datasets and a real dataset compares the proposed methods with the practical policy planning and a state-of-the-art method that solve the production planning problem of items. The results demonstrate the relevance of the production planning of orders.

Funder

FAPESP

FAPEMIG

CNPq

Publisher

EDP Sciences

Subject

Management Science and Operations Research,Computer Science Applications,Theoretical Computer Science

Reference18 articles.

1. Dimensionamento de lotes e programação do forno numa fundição automatizada de porte médio

2. Lot sizing and furnace scheduling in small foundries

3. Camargo V.C.B., Um algoritmo evolutivo para o problema de dimensionamento de lotes em fundições de mercado. Master’s thesis, Instituto de Ciências Matemáticas e de Computação – USP (2009).

4. A knapsack problem as a tool to solve the production planning problem in small foundries

5. Integrated Production and Outbound Distribution Scheduling: Review and Extensions

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