A Case Study Analysis of the Overhead Rate Impact Model Used During the C-5 Maintenance Source Selection - William N Ward - Books - Biblioscholar - 9781288306015 - November 16, 2012
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A Case Study Analysis of the Overhead Rate Impact Model Used During the C-5 Maintenance Source Selection

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Publisher Marketing: The Overhead Rate Impact (ORI) model was used during the C-5 Maintenance source selection to evaluate the impact the new workload would have on the existing overhead rates. The objectives of this research study were to evaluate the ORI model and to identify the lessons learned from this source selection. To accomplish these objectives, interviews were conducted with members of the source selection team who were on the Cost Integrated Product Team (IPT). The experts were asked to identify the strengths and weaknesses of the ORI model and to make recommendation on how to improve the model. This study identified strengths and weaknesses of the ORI model. The strengths identified by the research are that the model was easy to use and the fact that the model can calculate overhead savings quickly. The weaknesses identified by the research are that the model uses an average overhead rate for the entire facility, the accuracy of the inputs is questionable, the model does not address limits to the amount of excess capacity, and that the model does not account for the theoretical limit to savings. Based on these findings, this research makes recommendations of how overhead savings should be evaluated in future source selections. The recommendations are that overhead savings should be calculated at the lowest possible level, the amount of existing excess capacity should be evaluated, the rate and factor inputs to the model should be validated at the lowest possible level, and evaluators must recognize the theoretical limit to potential overhead savings.

Media Books     Paperback Book   (Book with soft cover and glued back)
Released November 16, 2012
ISBN13 9781288306015
Publishers Biblioscholar
Pages 64
Dimensions 189 × 246 × 3 mm   ·   99 g