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  6. Reliability Inference for Field Conditions from Accelerated Degradation Testing
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Reliability Inference for Field Conditions from Accelerated Degradation Testing

Date Issued
May 18, 2006
Author(s)
Liao, Haitao  
Elsayed, Elsayed A.
DOI
https://doi-org.utk.idm.oclc.org/10.1002/nav.20163
Link to full text
https://doi-org.utk.idm.oclc.org/10.1002/nav.20163
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/47464
Abstract

Accelerated degradation testing (ADT) is usually conducted under deterministic stresses such as constant-stress, step-stress, and cyclic-stress. Based on ADT data, an ADT model is developed to predict reliability under normal (field) operating conditions. In engineering applications, the standard approach for reliability prediction assumes that the normal operating conditions are deterministic or simply uses the mean values of the stresses while ignoring their variability. Such an approach may lead to significant prediction errors. In this paper, we extend an ADT model obtained from constant-stress ADT experiments to predict field reliability by considering the stress variations. A case study is provided to demonstrate the proposed statistical inference procedure. The accuracy of the procedure is verified by simulation using various distributions of field stresses.

Subjects

reliability predictio...

stochastic stress exp...

approximation

Brownian motion with ...

Itô calculus

Disciplines
Industrial Engineering
Embargo Date
April 23, 2010

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