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1014 王浩伟,滕克难,吕卫民
China Aerospace Press,2013:5-29. tion for missile components based on multiple parameters cor‐
[2] 李 久 祥 ,申 军 . 装 备 贮 存 延 寿 技 术[M]. 北 京 :中 国 宇 航 出 版 relative degrading with random shocks of environmental stress‐
社,2007:1-38. es[J]. Acta Aeronautica et Astronautica Sinica, 2016, 37
LI Jiu‐xiang,SHEN Jun. Equipment storage life‐extending tech‐ (11):3404-3412.
nology[M]. Beijing:China Aerospace Press,2007:1-38. [15] Ye Z S,Tang L C,Xu H Y. A distribution‐based systems reli‐
[3] 祝学军,管飞,王洪波,等 . 战术弹道导弹贮存工程基础[M]. ability model under extreme shocks and natural degradation
北京:中国宇航出版社,2016:10-21. [J]. IEEE Transactions on Reliability,2011,60(1):246-256.
ZHU Xue‐jun,GUAN Fei,WANG Hong‐bo,et al. Tactical [16] Jiang L,Feng Q,Coit D W. Modeling zoned shock effects on
ballistic missile storage engineering foundation[M]. Beijing: stochastic degradation in dependent failure processes[J]. IIE
China Aerospace Press,2016:10-21.. Transactions,2015,47(5):460-470.
[4] Heller M,Calero J,Wescott R,et al. Life extension of F/A‐18 [17] Fan M F,Zeng Z G,Zio E,et al. A stochastic hybrid systems
LAU‐7 missile launcher housings using rework shape optimisa‐ model of common‐cause failures of degrading components[J].
tion [J]. Advanced Materials Research, 2014, 891‐892: Reliability Engineering & System Safety,2018,172:159-170.
739-744. [18] 王浩伟,徐廷学,周伟 . 综合退化数据与寿命数据的某型电连接
[5] 王宜晓,刘晓恩 . 美国“民兵”3 和“三叉戟”2 导弹改进计划综述 器 寿 命 预 测 方 法[J]. 上 海 交 通 大 学 学 报 ,2014,48(5):
[J]. 中国航天,2011(3):35-37. 702-706.
WANG Yi‐xiao,LIU Xiao‐en. Summary of U.S. minuteman 3 WANG Hao‐wei,XU Ting‐xue,ZHOU Wei. Lifetime predic‐
and trident 2 missile improvement programs[J]. Aerospace tion method for missile electrical connector synthesizing degra‐
China,2011(3):35-37. dation data and lifetime data[J]. Journal of Shanghai Jiao Tong
[6] 张百勇,刘凯,孙炯,等 . 国内外武器装备延寿技术概论[J]. 舰 University,2014,48(5):702-706.
船电子工程,2017(4):10-13. [19] Wang L,Pan R,Wang X,et al. A Bayesian reliability evaluation
ZHANG Bai‐yong,LIU Kai,SUN Jiong,et al. Introduction of method with different types of data from multiple sources[J]. Re⁃
life extension technology of weapon equipment at home and liability Engineering & System Safety,2017,167:128-135.
abroad[J]. Ship Electronic Engineering,2017(4):10-13. [20] Peng W W,Li Y F,Mi J H,et al. Reliability of complex sys‐
[7] 张仕念,何敬东,颜诗源,等 . 导弹贮存延寿的技术途径及关键 tems under dynamic conditions:A Bayesian multivariate deg‐
技术[J]. 装备环境工程,2014,11(4):37-41. radation perspective[J]. Reliability Engineering & System Safe⁃
ZHANG Shi‐nian,HE Jing‐dong,YAN Shi‐yuan,et al. Basic ap‐ ty,2016,153:75-87.
proaches and key techniques for missile storage life extension[J]. [21] 徐廷学,王浩伟,张鑫 . EM 算法在 Wiener 过程随机参数的超参
Equipment Environmental Engineering,2014,11(4):37-41. 数 值 估 计 中 的 应 用[J]. 系 统 工 程 与 电 子 技 术 ,2015,37(3):
[8] Peng W W,Huang H Z,Xie M,et al. A Bayesian approach 702-712.
for system reliability analysis with multilelel pass‐fail,lifetime XU Ting‐xue,WANG Hao‐wei,ZHANG Xin. Application of
and degradation data sets[J]. IEEE Transactions on Reliability, EM algorithm to estimate hyper parameters of the random pa‐
2013,62(3):689-699. rameters of Wiener process[J]. Systems Engineering and Elec⁃
[9] Luo W,Zhang C H,Chen X,et al. Accelerated reliability tronics,2015,37(3):702-712.
demonstration under competing failure modes[J]. Reliability [22] 王小林,郭波,程志君 . 融合多源信息的维纳过程性能退化产品
Engineering & System Safety,2015,136:75-84. 的可靠性评估[J]. 电子学报,2012,40(5):977-982.
[10] 罗湘勇,黄小凯 . 基于多机理竞争退化的导弹贮存可靠性分析 WANG Xiao‐lin,GUO Bo,CHENG Zhi‐jun. Reliability assess‐
[J]. 北京航空航天大学学报,2013,39(5):701-705. ment of products with Wiener process degradation by fusing
LUO Xiang‐yong,HUANG Xiao‐kai. Storage reliability analy‐ multiple information[J]. Acta Electronica Sinica,2012,40
sis of missile based on multi‐mechanism competition degrada‐ (5):977-982.
tion method[J]. Journal of Beijing University of Aeronautics [23] Jin G,Matthews D E,Zhou Z. A Bayesian framework for
and Astronautics,2013,39(5):701-705. on‐line degradation assessment and residual life prediction of
[11] 王浩伟,徐廷学,冯玉光 . 基于退化失效与突发失效竞争的导弹 secondary batteries inspacecraft[J]. Reliability Engineering &
剩余寿命预测[J]. 航空学报,2016,37(4):1240-1248. System Safety,2013,113:7-20.
WANG Hao‐wei,XU Ting‐xue,FENG Yu‐guang. Remaining [24] Gebraeel N,Pan J. Prognostic degradation models for comput‐
life prediction based on competing risks of degradation failure ing and updating residual life distributions in a time‐varying en‐
and traumatic failure for missile[J]. Acta Aeronautica et Astro⁃ vironment[J]. IEEE Transactions on Reliability,2008,57(4):
nautica Sinica,2016,37(4):1240-1248. 539-550.
[12] Fan M G,Zeng Z G,Zio E,et al. Modeling dependent compet‐ [25] 王浩伟,徐廷学,赵建忠 . 融合加速退化和现场实测退化数据的
ing failure processes with degradation‐shock dependence[J]. 剩余寿命预测方法[J]. 航空学报,2014,35(12):3350-3357.
Reliability Engineering & System Safety,2017,165:422-430. WANG Hao‐wei,XU Ting‐xue,ZHAO Jian‐zhong. Residual
[13] Che H,Zeng S,Guo J,et al. Reliability modeling for depen‐ life prediction method fusing accelerated degradation and field
dent competing failure process with mutually dependent degra‐ degradation data[J]. Acta Aeronautica et Astronautica Sinica,
dation process and shock process[J]. Reliability Engineering & 2014,35(12):3350-3357.
System Safety,2018,180:168-178. [26] Wang H W,Xu T X,Wang W Y. Remaining life prediction
[14] 王浩伟,滕克难,李军亮 . 随机环境应力冲击下基于多参数相关 based on Wiener processes with ADT prior information[J].
退 化 的 导 弹 部 件 寿 命 预 测[J]. 航 空 学 报 ,2016,37(11): Quality and Reliability Engineering International,2016,32
3404-3412. (3):753-765.
WANG Hao‐wei,TENG Ke‐nan,LI Jun‐liang. Lifetime predic‐ [27] 王浩伟,滕克难,奚文骏 . 非恒定环境下基于载荷谱的导弹部件
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