Journal of Terahertz Science and Electronic Information Technology , Volume. 19, Issue 6, 1057(2021)
Risk priority number analysis based on subjective and objective integrated weighting
[2] [2] BOWLES J B. An assessment of RPN prioritization in a failure modes effects and criticality analysis[C]// Proceedings of Annual Reliability and Maintainability Symposium. Tampa, Florida:IEEE, 2003:380-386.
[3] [3] KESKIN G A, ?ZKAN C. An alternative evaluation of FMEA:fuzzy ART algorithm[J]. Quality and Reliability Engineering International, 2009, 25(4):647-661.
[4] [4] GILCHRIST W. Modelling failure modes and effects analysis[J]. International Journal of Quality & Reliability Management, 1993, 10(2):16-23.
[5] [5] BEN-DAYA M, RAOUF A. A revised failure mode and effects analysis model[J]. International Journal of Quality & Reliability Management, 1996, 13(3):43-47.
[6] [6] VON AHSEN A A. Cost-oriented failure mode and effects analysis[J]. International Journal of Quality & Reliability Management, 2008, 25(1):466-476.
[10] [10] WANG Y M, CHIN K S, POON G K K. Risk evaluation in failure mode and effects analysis using fuzzy weighted geometric mean[J]. Expert Systems with Applications, 2009, 36(2):1195-1207.
[11] [11] CHANG K H, CHANG Y C, LEE Y T. Integrating TOPSIS and DEMATEL methods to rank the risk of failure of FMEA[J]. International Journal of Information Technology and Decision Making, 2014, 13(6):1229-1257.
[12] [12] AHMET C K, MEHMET E L. Fuzzy failure modes and effects analysis by using fuzzy TOPSIS-based fuzzy AHP[J]. Expert Systems with Applications, 2012, 39(1):61-67.
[13] [13] WANG Lien, LIU Huchen, QUAN Meiyun. Evaluating the risk of failure modes with a hybrid MCDM model under interval-valued intuitionistic fuzzy environments[J]. Computers & Industrial Engineering, 2016, 102(11):175-185.
[14] [14] CHANG K H,CHANG Y C, TSAI I T. Enhancing FMEA assessment by integrating grey relational analysis and the decision making trial and evaluation laboratory approach[J]. Engineering Failure Analysis, 2015, 31(6):211-224.
[15] [15] YANG Jianping, HUANG Hongzhong, HE Liping, et al. Risk evaluation in failure mode and effects analysis of aircraft turbine rotor blades using Dempster-Shafer evidence theory under uncertainty[J]. Engineering Failure Analysis, 2011, 18(8):2084-2092.
[16] [16] CERTA A, HOPPS F, INGHILLERI R, et al. A Dempster-Shafer theory-based approach to the Failure Mode, Effects and Criticality Analysis(FMECA) under epistemic uncertainty:application to the propulsion system of a fishing vessel[J]. Reliability of Engineering and System Safety, 2017, 159(1):69-79.
Get Citation
Copy Citation Text
TAN Zhengchao, SUO Bin, YANG Zhanping. Risk priority number analysis based on subjective and objective integrated weighting[J]. Journal of Terahertz Science and Electronic Information Technology , 2021, 19(6): 1057
Category:
Received: Feb. 23, 2020
Accepted: --
Published Online: Feb. 25, 2022
The Author Email: Zhengchao TAN (tan860724@163.com.)