DocumentCode
1765206
Title
Best Constant-Stress Accelerated Life-Test Plans With Multiple Stress Factors for One-Shot Device Testing Under a Weibull Distribution
Author
Balakrishnan, N. ; Man Ho Ling
Author_Institution
Dept. of Math. & Stat., McMaster Univ., Hamilton, ON, Canada
Volume
63
Issue
4
fYear
2014
fDate
Dec. 2014
Firstpage
944
Lastpage
952
Abstract
We discuss here the design of constant-stress accelerated life-tests for one-shot device testing by assuming a Weibull distribution as a lifetime model. Because there are no explicit expressions for the maximum likelihood estimators of the model parameters and their variances, we adopt the asymptotic approach here to develop an algorithm for the determination of optimal allocation of devices, inspection frequency, and the number of inspections at each stress level, by assuming a Weibull distribution with non-constant scale and shape parameters as the lifetime distribution. The asymptotic variance of the estimate of reliability of the device at a specified mission time is minimized subject to a pre-fixed experimental budget, and a termination time. Examples are provided to illustrate the proposed algorithm for the determination of the best test plan. A sensitivity analysis of the best test plan is also carried out to examine the effect of misspecification of the model parameters.
Keywords
Weibull distribution; inspection; life testing; maximum likelihood estimation; reliability theory; sensitivity analysis; stress analysis; Weibull distribution; asymptotic approach; asymptotic variance; constant-stress accelerated life-test design; constant-stress accelerated life-test plans; inspection frequency; lifetime distribution; lifetime model; maximum likelihood estimators; one-shot device testing; optimal allocation; prefixed experimental budget; reliability estimation; sensitivity analysis; stress factors; termination time; Inspection; Maximum likelihood estimation; Reliability engineering; Shape; Stress; Weibull distribution; Accelerated life-test; Weibull distribution; asymptotic variance; best test plan; censoring; non-constant shape parameter; one-shot device; reliability;
fLanguage
English
Journal_Title
Reliability, IEEE Transactions on
Publisher
ieee
ISSN
0018-9529
Type
jour
DOI
10.1109/TR.2014.2336391
Filename
6860327
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