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Optimum reliability acceptance sampling plan using Type-I generalized hybrid censoring scheme for products under warranty

Jimut Bahan Chakrabarty (Quantitative Methods and Operations Management Area, Indian Institute of Management Kozhikode, Kozhikode, India)
Shovan Chowdhury (Quantitative Methods and Operations Management Area, Indian Institute of Management Kozhikode, Kozhikode, India)
Soumya Roy (Quantitative Methods and Operations Management Area, Indian Institute of Management Kozhikode, Kozhikode, India)

International Journal of Quality & Reliability Management

ISSN: 0265-671X

Article publication date: 3 August 2020

Issue publication date: 15 February 2021

274

Abstract

Purpose

The purpose of this paper is to design an optimal reliability acceptance sampling plan (RASP) using the Type-I generalized hybrid censoring scheme (GHCS) for non-repairable products sold under the general rebate warranty. A cost function approach is proposed for products having Weibull distributed lifetimes incorporating relevant costs.

Design/methodology/approach

For Weibull distributed product lifetimes, acceptance criterion introduced by Lieberman and Resnikoff (1955) is derived for Type-I GHCS. A cost function is formulated using expected warranty cost and other relevant cost components incorporating the acceptance criterion. The cost function is optimized following a constrained optimization approach to arrive at the optimum RASP. The constraint ensures that the producer's and the consumer's risks are maintained at agreed-upon levels.

Findings

Optimal solution using the above approach is obtained for Type-I GHCS. As a special case of Type-I GHCS, the proposed approach is also used to arrive at the optimal design for Type-I hybrid censoring scheme as shown in Chakrabarty et al. (2019). Observations regarding the change in optimal design and computational times between the two censoring schemes are noted. An extensive simulation study is performed to validate the model for finite sample sizes and the results obtained are found to be in strong agreement. In order to analyze the sensitivity of the optimal solution due to misspecification of parameter values and cost components, a well-designed sensitivity analysis is carried out using a real-life failure data set from Lawless (2003). Interesting observations are made regarding the change in optimal cost due to change in parameter values, the impact of warranty cost in optimal design and change in optimal design due to change in lot sizes.

Originality/value

The research presents an approach for designing optimal RASPs using Type-I generalized hybrid censoring. The study formulates optimum life test sampling plans by minimizing the average aggregate costs involved, which makes it valuable in dealing with real-life problems pertaining to product quality management.

Keywords

Acknowledgements

The authors are thankful to the reviewers and the editor for their constructive comments and suggestions which have improved the earlier version of this manuscript.

Citation

Chakrabarty, J.B., Chowdhury, S. and Roy, S. (2021), "Optimum reliability acceptance sampling plan using Type-I generalized hybrid censoring scheme for products under warranty", International Journal of Quality & Reliability Management, Vol. 38 No. 3, pp. 780-799. https://doi.org/10.1108/IJQRM-08-2019-0261

Publisher

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Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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