Journal of Shanghai Jiao Tong University (Science) ›› 2019, Vol. 24 ›› Issue (3): 351-356.doi: 10.1007/s12204-019-2067-5
GU Yingkui *(古莹奎), SHEN Yanjun (沈延军), YU Dongping (余东平)
出版日期:
2019-06-01
发布日期:
2019-05-29
通讯作者:
GU Yingkui *(古莹奎)
E-mail:guyingkui@163.com
GU Yingkui *(古莹奎), SHEN Yanjun (沈延军), YU Dongping (余东平)
Online:
2019-06-01
Published:
2019-05-29
Contact:
GU Yingkui *(古莹奎)
E-mail:guyingkui@163.com
摘要: It is necessary to determine the degradation path model of products at first when using the method based on degradation path model to evaluate the degradation reliability of products. At present, the degradation path model is mainly determined by scatter plots of degradation data. However, this method has strong subjectivity and is liable to cause the evaluation results to be inconsistent with the actual situation. In this paper, a degradation reliability analysis method based on TOPSIS (technique for order preference by similarity to an ideal solution) model selection is proposed, and its implementation process is given. The optimal degradation path model is selected according to the calculated proximity. With the help of TOPSIS method, various degradation path models can be selected and quantified, and the original degradation path method can be improved to avoid the risk of errors in product reliability evaluation caused by inaccurate subjective hypothesis, so as to ensure the objectivity and accuracy in the process of model determination. The validity and practicability of the proposed method are verified by the degradation analysis of the injector of a certain type of diesel engine.
中图分类号:
GU Yingkui *(古莹奎), SHEN Yanjun (沈延军), YU Dongping (余东平). Degradation Reliability Analysis Based on TOPSIS Model Selection Method[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(3): 351-356.
GU Yingkui *(古莹奎), SHEN Yanjun (沈延军), YU Dongping (余东平). Degradation Reliability Analysis Based on TOPSIS Model Selection Method[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(3): 351-356.
[1] | GU Y K. Reliability analysis and risk assessment fordiesel engine [M]. Beijing: Tsinghua University Press,2012 (in Chinese). |
[2] | LEE H M, WU J W, LEI C L. Assessing the lifetimeperformance index of exponential products with stepstressaccelerated life-testing data [J]. IEEE Transactionson Reliability, 2013, 62(1): 296-304. |
[3] | CHEN J, ZIO E, LI J, et al. Accelerated life test forreliability evaluation of pneumatic cylinders [J]. IEEEAccess, 2018, 6: 75062-75075. |
[4] | WANG Y P, PHAM H. Modeling the dependent competingrisks with multiple degradation processes andrandom shock using time-varying copulas [J]. IEEETransactions on Reliability, 2012, 61(1): 13-22. |
[5] | JIANG X, LIU H Z, LIU L L, et al. Extremely smallscalesample’s reliability of an electric spindle based ondistribution of false lifetime [J]. Journal of Vibrationand Shock, 2013, 32(19): 80-85 (in Chinese). |
[6] | SUN Q, KVAM P H. Multi-cause degradation pathmodel: A case study on rubidium lamp degradation[J]. Quality and Reliability Engineering International,2011, 27(6): 781-793. |
[7] | HU Y T, FAN J S, HU C H. Modeling degradationpath using v-support vector regression [J]. Systems Engineeringand Electronics, 2017, 39(1): 231-236 (inChinese). |
[8] | DENG A M, CHEN X, ZHANG C H, et al. Reliabilityassessment based on performance degradation data[J]. Journal of Astronautics, 2006, 27(3): 546-552 (inChinese). |
[9] | LU C J, MEEKER W O. Using degradation measuresto estimate a time-to-failure distribution [J]. Technometrics,1993, 35(2): 161-174. |
[10] | BAGDONAVIˇ CIUS V, HAGHIGHI F, NIKULIN M.Statistical analysis of general degradation path modeland failure time data with multiple failure modes [J].Communications in Statistics - Theory and Methods,2005, 34(8): 1771-1791. |
[11] | CHEN Z H, LIU Y S. Ecumenical model of reliabilityevaluation based on performance degradation data [J].Journal of Electronic Measurement and Instrument,2008, 22(Sup. 2): 22-25 (in Chinese). |
[12] | BEHZADIAN M, OTAGHSARA S K, YAZDANI M,et al. A state-of the-art survey of TOPSIS applications[J]. Expert Systems with Applications, 2012, 39(17):13051-13069. |
[13] | LIN M C, WANG C C, CHEN M S, et al. Using AHPand TOPSIS approaches in customer-driven productdesign process [J]. Computers in Industry, 2008, 59(1):17-31. |
[1] | SHI Lianxing (石连星), WANG Zhiheng (王志恒), LI Xiaoyong (李小勇) . Novel Data Placement Algorithm for Distributed Storage System Based on Fault-Tolerant Domain[J]. J Shanghai Jiaotong Univ Sci, 2021, 26(4): 463-470. |
[2] | QIAO Xing, MA Dan, YAO Xuliang, FENG Baolin. Stability and Numerical Analysis of a Standby System[J]. J Shanghai Jiaotong Univ Sci, 2020, 25(6): 769-778. |
[3] | LAI Junfeng (赖俊峰), JI Dandan (季丹丹), YAN Zaizai (闫在在). Extended Inverse Gaussian Distribution: Properties and Application[J]. J Shanghai Jiaotong Univ Sci, 2020, 25(2): 193-200. |
[4] | ZHOU Yuan (周源), WANG Haowei (王浩伟), Lü Weimin (吕卫民). Statistical Inference of Reliability with Multivariate Accelerated Degradation Data[J]. Journal of Shanghai Jiao Tong University (Science), 2020, 25(2): 237-245. |
[5] | XU Jiajun (许家俊), PEI Zhiyuan (裴志远), GUO Lin (郭琳), ZHANG Ruxia (张儒侠), HU Hualang. Reliability Analysis of Cloud Service-Based Applications Through SRGM and NMSPN[J]. Journal of Shanghai Jiao Tong University (Science), 2020, 25(1): 57-64. |
[6] | CHENG Li (程立), YANG Yuanyuan (杨媛媛), MU Huina (穆慧娜), YANG Xiaoyu (杨小玉), LI Li (李立. Reliability Evaluation Method Based on Double Beta Prior Distribution for the Pyrotechnic Device[J]. J Shanghai Jiaotong Univ Sci, 2019, 24(5): 622-627. |
[7] | PENG Rui (彭锐), MA Xiaoyang *(马晓洋), ZHAI Qingqing (翟庆庆), GAO Kaiye (高凯烨). Software Reliability Growth Model Considering First-Step and Second-Step Fault Dependency[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(4): 477-479. |
[8] | LIU Gehui (刘葛辉), LONG Xiangyu (龙翔宇), TONG Shuo (仝硕), ZHANG Rui (张瑞), CHEN Shaoku. Optimum Consecutive Preventive Maintenance Scheduling Model Considering Reliability[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(4): 490-495. |
[9] | LIU Ji (刘骥), ZHANG Mingze (张明泽), CHEN Xin (陈昕), QI Pengshuai (齐朋帅). Approach for Reliability Evaluation of Cross-Linked Polyethylene Under Combined Thermal and Vibration Stresses[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 758-763. |
[10] | ZHANG Sheng (张生), REN Chenhui (任晨辉), WAN Liyong (万里勇), YI Xiaojian (伊枭剑), DONG . Reliability Analysis of Aero-Engine Main Fuel System Based on GO Methodology[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 770-775. |
[11] | YU Guibo (于贵波), CAO Lijun (曹立军), WANG Shuhai (王书海), MA Qiao (马乔). Research on Nonlinear Dynamic Simulation and Fatigue Reliability Life Prediction for Synthesis Transmission System of Self-Propelled Gun[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(6): 776-783. |
[12] | ZHANG Shuai (张帅), Lü Ruoning (吕若宁), SI Shubin (司书宾), REN Fangyu (任方宇). Reliability Analysis of Systems with Common Cause Failure Based on Stress-Strength Interference Model[J]. Journal of Shanghai Jiao Tong University (Science), 2018, 23(5): 707-710. |
[13] | ZHANG Xiaoqiang1 (张小强), GAO Huiying2 (高会英),FU Guozhong1 (付国忠), HUANG Hongzhong1 . Reliability Analysis of Filtering Reducers Considering Temperature Correction and Shock Load of Space[J]. sa, 2018, 23(3): 456-. |
[14] | YAN Hua (闫华), GAO Li (高黎), QI Lei (漆磊), WAN Ping (万平). Simplified Markov Model for Reliability Analysis of Phased-Mission System Using States Merging Method[J]. sa, 2018, 23(3): 418-. |
[15] | SHUAI Yong1;2 (帅勇), SONG Tailiang3 (宋太亮), WANG Jianping1 (王建平), ZHAN Wenbin4 (詹文. Hybrid Reliability Parameter Selection Method Based on Text Mining, Frequent Pattern Growth algorithm and Fuzzy Bayesian Network[J]. sa, 2018, 23(3): 423-. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||