mailto:uumlib@uum.edu.my 24x7 Service; AnyTime; AnyWhere

Bayesian Two-sided Complete Group Chain Sampling Plan for Binomial Distribution using Beta Prior through Quality Regions

Hafeez, Waqar and Aziz, Nazrina (2022) Bayesian Two-sided Complete Group Chain Sampling Plan for Binomial Distribution using Beta Prior through Quality Regions. Journal of Information and Communication Technology, 21 (01). pp. 51-69. ISSN 2180-3862

[thumbnail of JICT 21 01 2022 51-69.pdf]
Preview
PDF - Published Version
Available under License Attribution 4.0 International (CC BY 4.0).

Download (2MB) | Preview

Abstract

Acceptance sampling is a technique for statistical quality assurance based on the inspection of a random sample to decide the lot disposition: accept or reject. Producer’s risk and consumer’s risk are inevitable in acceptance sampling. Most conventional plans only focus on minimizing the consumer’s risk. This study focused on minimizing both producer’s and consumer’s risks through the quality region. Experts from available historical knowledge concurred that Bayesian is the best approach to make the correct decision. In this study, a Bayesian 52 two-sided complete group chain sampling plan (BTSCGChSP) was proposed for the average probability of acceptance. The binomial distribution was used to derive the probability of lot acceptance, and the beta distribution was used as the prior distribution. For selected design parameters in BTSCGChSP, the acceptable quality level and limiting quality level were considered to estimate quality regions that were directly associated with producer’s and consumer’s risks, respectively. Four quality regions: (i) quality decision region , (ii) probabilistic quality region (PQR), (iii) limiting quality region, and (iv) indifference quality region, were evaluated. To compare with the existing Bayesian group chain sampling plan (BGChSP), operating characteristic curves were used for the same parameter values and probability of lot acceptance. The findings explained that BTSCGChSP provided a smaller proportion of defectives than BGChSP for the same probability of acceptance. If quality regions were found for the same values of consumer and producer risks, then the BTSCGChSP region would contain fewer defectives than in the BGChSP region. Therefore, for industrial practitioners, the proposed plan is a better substitute for existing BGChSP and other conventional plans.

Item Type: Article
Uncontrolled Keywords: Acceptance sampling, Bayesian group chain, beta distribution, binomial distribution, quality region
Subjects: Q Science > QA Mathematics
Divisions: College of Arts and Sciences
Depositing User: Mrs Nurin Jazlina Hamid
Date Deposited: 27 Jul 2022 01:55
Last Modified: 02 Feb 2023 02:46
URI: https://repo.uum.edu.my/id/eprint/28752

Actions (login required)

View Item View Item