Unitary Owen Points in Cooperative Lot-Sizing Models with Backlogging

Author:

Guardiola Luis A.ORCID,Meca AnaORCID,Puerto JustoORCID

Abstract

This paper analyzes cost sharing in uncapacitated lot-sizing models with backlogging and heterogeneous costs. It is assumed that several firms participate in a consortium aiming at satisfying their demand over the planning horizon with minimal operating cost. Each individual firm has its own ordering channel and holding technology, but cooperation with other firms consists in sharing that information. Therefore, the firms that cooperate can use the best ordering channels and holding technology among members of the consortium. This mode of cooperation is stable. in that allocations of the overall operating cost exist, so that no group of agents benefit from leaving the consortium. Our contribution in the current paper is to present a new family of cost sharing allocations with good properties for enforcing cooperation: the unitary Owen points. Necessary and sufficient conditions are provided for the unitary Owen points to belong to the core of the cooperative game. In addition, we provide empirical evidence, through simulation, showing that, in randomly-generated situations, the above condition is fulfilled in 99% of the cases. Additionally, a relationship between lot-sizing games and a certain family of production-inventory games, through Owen’s points of the latter, is described. This interesting relationship enables easily constructing a variety of coalitionally stable allocations for cooperative lot-sizing models.

Funder

European Regional Development Fund

Ministerio de Ciencia, Innovación y Universidades

Junta de Andalucía

Fundación BBVA

Agencia Estatal de Investigación

Publisher

MDPI AG

Subject

General Mathematics,Engineering (miscellaneous),Computer Science (miscellaneous)

Reference27 articles.

1. Single-item dynamic lot-sizing problems: An updated survey

2. A Literature Review on Inventory lot-sizing Problems;Ullah;Glob. J. Res. Eng.,2010

3. Lot-size models with backlogging: Strong reformulations and cutting planes

4. Cooperative and Noncooperative Games for Capacity Planning and Scheduling;Hall,2008

5. Competition under capacitated dynamic lot-sizing with capacity acquisition

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