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[1] 邢鹏康,胡彬.基于油液监测的齿轮箱疲劳磨损运行状态评估[J].机械制造与自动化,2022,51(05):58-60.[2] 黄芸琪,糜莉萍,伏喜胜等.KRG齿轮油在动车组齿轮箱中的可靠性研究[J].润滑油,2023,38(01):12-15.[3] 唐磊,沈涛,王熠等.齿轮箱润滑油磨粒分析研究现状与进展[J].设备管理与维修,2022,526(17):167-174.[4] 孟享广.基于油液在线监测技术的底盘发动机故障预测研究[D].北京石油化工学院,2022.[5] 闫宗庆,庞新宇,陈明鑫.基于油液分析的齿轮磨损量趋势预测[J].现代制造工程,2020(11):131-135+149.[6] 陈忠年,刘军,常建宙,张海东,吴静仁.油液在线检测技术在加热炉液压站中的应用[J].天津冶金,2022(05):48-50.[7] Kumar,S.,Mukherjee,P.S.and Mishra,N.M.(2005),Online condition monitoring of engine oil,Industrial Lubrication and Tribology,Vol.57 No.6,pp.260-267.[8] Wu xingxin.Study on oil quality evaluation system and its implementation based on multi-information fusion[C],Advanced Materials Research.Trans Tech Publications Ltd,2011,197:1486-1493.[9] 骆骏德.隧道掘进机液压油液工况监测方法与系统研究[J].北华航天工业学院学报,2020,30(01):8-10.[10] Wang J,Shen Y,Zheng G,et al.Research on aviation oil monitoring technology based on information fu-sion[C],2016 Prognostics and System Health Man-agement Conference (PHM-Chengdu).IEEE,2016:1-4.[11] 程治升,费逸伟,姜旭峰.信息融合技术在飞机发动机油液故障诊断中的应用研究[J].航空维修与工程,2012(06):64-66.[12] Wu X X.Study on oil quality evaluation system and its implementation based on multi-information fusion[C],Advanced Materials Research. Trans Tech Publications Ltd,2011,197:1486-1493.[13] 赵俊霖.基于轻量化卷积神经网络的医学图像分割方法[D].山东师范大学,2023.[14] 金桐彤,杨兆军,王大川等.重型机床液压元件油液污染退化量分布剖面可靠性建模[J].中国机械工程,2020,31(13):1613-1620+1628.[15] 张宇翔,宣征南,孙志伟等.基于油液监测技术的齿轮箱运行状态模糊综合评价[J].现代制造工程,2017,No.446(11):22-28+69.[16] 金桐彤,杨兆军,王大川等.重型机床液压元件油液污染退化量分布剖面可靠性建模[J].中国机械工程,2020,31(13):1613-1620+1628.[17] 焦博,刘国宁,赵孟轩等.基于机器视觉的亚像素精度法兰盘尺寸测量方法[J].现代制造工程,2022(07):121-126.[18] 杨祎宁,贺向东,赵庆等.应用深度学习方法的汽车轮毂类型识别[J].现代制造工程,2022(12):75-82.