System Reliability Models with Dependent Degradation Processes
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-28859-3_19
Reference100 articles.
1. Sari JK, Newby MJ, Brombacher AC, Tang LC (2009) Bivariate constant stress degradation model: LED lighting system reliability estimation with two-stage modelling. Qual Reliab Eng Int 25(8):1067–1084
2. Mi J, Li Y-F, Peng W, Huang H-Z (2018) Reliability analysis of complex multi-state system with common cause failure based on evidential networks. Reliab Eng Syst Saf 174:71–81
3. Rodríguez-Picón LA, Rodríguez-Picón AP, Alvarado-Iniesta A (2019) Degradation modeling of 2 fatigue-crack growth characteristics based on inverse Gaussian processes: a case study. Appl Stoch Model Bus Ind 35(3):504–521
4. Lu CJ, Meeker WQ (1993) Using degradation measures to estimate a time-to-failure distribution. Technometrics 35(2):161–174
5. Zuo MJ, Renyan J, Yam RCM (1999) Approaches for reliability modeling of continuous-state devices. IEEE Trans Reliab 48(1):9–18
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