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Production and Operations Management Vol. 14 No. 2 2005

Incentive Schemes for Semiconductor Capacity Allocation: A Game Theoretic Analysis

Suleyman Karabuk1; S. David Wu2

1 School of Industrial Engineering, College of Engineering, University of Oklahoma, Norman, Oklahoma 73019‐0631, USA · 2 Department of Industrial and Systems Engineering, P. C. Rossin College of Engineering, 19 Memorial Drive West, Lehigh University, Bethlehem, Pennsylvania 18015, USA

Abstract

We study incentive issues that arise in semiconductor capacity planning and allocation. Motivated by our experience at a major U. S. semiconductor manufacturer, we model the capacity‐allocation problem in a game‐theoretic setting as follows: each product manager (PM) is responsible for a certain product line, while privately owning demand information through regular interaction with the customers. Capacity‐allocation is carried out by the corporate headquarters (HQ), which allocates manufacturing capacity to product lines based on demand information reported by the PMs. We show that PMs have an incentive to manipulate demand information to increase their expected allocation, and that a carefully designed coordination mechanism is essential for HQ to implement the optimal allocation. To this end, we design an incentive scheme through bonus payments and participation charges that elicits private demand information from the PMs. We show that the mechanism achieves budget‐balance and voluntary‐participation requirements simultaneously. The results provide important insights into the treatment of misaligned incentives in the context of semiconductor capacity‐allocation.

DOI
10.1111/j.1937-5956.2005.tb00017.x
Volume
14
Issue
2
Pages
175-188
Language
en
Sources
crossref openalex

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