TY - GEN
T1 - A novel statistical method for step-down stress accelerated life tests using PSO and MLE
AU - Yan, Shiyuan
AU - Li, Xinjun
AU - Zhang, Shinina
AU - He, Jingdong
AU - Yin, Weigang
AU - Tian, Chunxiang
N1 - Publisher Copyright:
© 2014 IEEE.
PY - 2014/5/13
Y1 - 2014/5/13
N2 - This paper focuses on the statistical method for the lifetime data from Weibull distribution in step-down-stress accelerated life tests (ALT). The key procedure of the ALT is to get the equivalent testing time of normal stress level from the higher stress, which is very sophisticated to solve with the traditional inverse moment method. This paper brings about a novel method, featuring maximum likelihood estimation (MLE) and particle swarm optimization (PSO) algorithm based iterative optimization. It's assumed the ALT lifetime data meets the Arrhenius equation, leaving the parameters a and b to be solved. First, using the failure data Sk at the highest stress, the Weibull distribution shape parameter m and characteristic life parameter η were obtained via MLE evaluation. Then, a new characteristic life parameter η is set for the next ALT stress level and a pseudo-failure data is generated from the stress corresponding failure data via the acceleration formula, and the new Weibull in and η pair is produced by using the pseudo-failure data. Under the premise that failure mechanism is consistent in ALT, it is deduced that the shape parameter m is consistent at different load stress, thus the iterative process of η optimization can be repeated by optimization the Arrhenius equation parameters a and b using PSO algorithm, till the appropriate distribution parameters are achieved by finding the global optimum value. According to the practical usage of the algorithm in the ALT data, it is proved that the algorithm in this paper is free from the table look-up technique by using GLUE or BLUE, and its accuracy is guaranteed by using the PSO algorithm which could avoid from local optimum.
AB - This paper focuses on the statistical method for the lifetime data from Weibull distribution in step-down-stress accelerated life tests (ALT). The key procedure of the ALT is to get the equivalent testing time of normal stress level from the higher stress, which is very sophisticated to solve with the traditional inverse moment method. This paper brings about a novel method, featuring maximum likelihood estimation (MLE) and particle swarm optimization (PSO) algorithm based iterative optimization. It's assumed the ALT lifetime data meets the Arrhenius equation, leaving the parameters a and b to be solved. First, using the failure data Sk at the highest stress, the Weibull distribution shape parameter m and characteristic life parameter η were obtained via MLE evaluation. Then, a new characteristic life parameter η is set for the next ALT stress level and a pseudo-failure data is generated from the stress corresponding failure data via the acceleration formula, and the new Weibull in and η pair is produced by using the pseudo-failure data. Under the premise that failure mechanism is consistent in ALT, it is deduced that the shape parameter m is consistent at different load stress, thus the iterative process of η optimization can be repeated by optimization the Arrhenius equation parameters a and b using PSO algorithm, till the appropriate distribution parameters are achieved by finding the global optimum value. According to the practical usage of the algorithm in the ALT data, it is proved that the algorithm in this paper is free from the table look-up technique by using GLUE or BLUE, and its accuracy is guaranteed by using the PSO algorithm which could avoid from local optimum.
KW - Accelerated life tests
KW - Particle swarm optimization
KW - Step-down-stress test evaluation
UR - https://www.scopus.com/pages/publications/84949926710
U2 - 10.1109/ICRMS.2014.7107245
DO - 10.1109/ICRMS.2014.7107245
M3 - 会议稿件
AN - SCOPUS:84949926710
T3 - ICRMS 2014 - Proceedings of 2014 10th International Conference on Reliability, Maintainability and Safety: More Reliable Products, More Secure Life
SP - 489
EP - 492
BT - ICRMS 2014 - Proceedings of 2014 10th International Conference on Reliability, Maintainability and Safety
A2 - En, Yunfei
A2 - Ji, Chunyang
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2014 10th International Conference on Reliability, Maintainability and Safety, ICRMS 2014
Y2 - 6 August 2014 through 8 August 2014
ER -