u Education experience: 1985/09-1989/07:Bachelor's degree in Mechanical   Engineering, Beihang university 1990/09-1993/03:Baster's degree in Mechanical   Engineering, Beihang university  1997/09-2001/07:PH.D in Mechanical Engineering , Beihang   University 2007/07-2007/08:Professional course entitled “Design and   manufacturing technologies for commercial airplane”, Cranfield University,   United Kingdom 2006/10- 2007/10:Visiting Scholar, Department of   Mechanical Engineering, University of Bath u Work experience 1993/04-1994/07:Assistant Lecturer, Department of   Manufacturing Engineering, Beihang University, China 1994/08-1999/07:Lecturer, Department of Manufacturing Engineering,   Beihang University, China 1999/08-2009/07:Associate Professor, School of   Mechanical Engineering and Automation, Beihang University, China 2002/04-2002/06:Senior Research Associate (SRA), Department   of Manufacturing Engineering and Engineering Management, City University of Hong   Kong, China 2012/10-2013/09:Chief designer, Department of Tooling   Design and Manufacturing, Commercial Aircraft Corporation of China Ltd, China 2009/08-present :Professor, School of Mechanical   Engineering and Automation, Beihang University, China u Teaching Courses u  Computer   Aided Manufacturing/Digital Design and Manufacturing (for undergraduate   students) u  Modeling   and Simulation for Manufacturing Systems (for graduate students) u  Supervisor   of graduate students: 13 PhD students,more than 70 Master Science degree   students(MS), 5 Master Engineering degree students(ME) u Research Areas and academic services  Currently   research interests include digital and intelligent manufacturing (CAD/CAPP/CAM/CNC),  reconfigurable   and flexible smart manufacturing system, dimension metrology and quality   control, and manufacturing system modeling and simulation, Digital and smart   Factory. He has published more than 150 papers in which include a number of   international journal and conference papers. 12 software copyrights and 30+   patents have been authorized by State Intelligent Property office of P. R.C   (SIPO).  Professor   Lianyu Zheng is the Chair Professor of the major of Intelligent Manufacturing   Engineering, at School of Mechanical Engineering and Automation, Beihang University(BUAA).   He is also serving for a number of academic committees or organizations as   various positions/roles including: member of Editorial Board of Journal of   Intelligent Manufacturing, vice-dean of the committee of Manufacturing   Technologies of CAA( China Automation Association), vice-dean of the   committee of Digital Design and Manufacturing of CGA( China Graphics   Association),  academic member of Beijing key Lab of Digital Design and   Manufacturing, academic member of Mechanical Automation Committee of CSME, academic   member of Intelligent Manufacturing Committee of Chinese Society of   Artificial Intelligence. u Representative Publications u  Xuexin Zhang, Liayu Zheng,Wei Fan, et al.   Knowledge graph and function block based Digital Twin modeling for robotic   machining of large-scale components. Robotics and Computer-Integrated Manufacturing,2024, 85(102609):1-19.DOI: 10.1016/j.rcim.2023.102609 u  Xiong   Zhao, Lianyu Zheng, Maoyuan Shi, et al. Unified modelling for continuous–discrete   hybrid adaptive machining CPS of large thin-walled parts. International   Journal of Production Research, 2023, DOI:10.1080/00207543.2023.2217304. u  Wei   Fan,Qiang Fu,Yansheng Cao, Lianyu Zheng, et al. Binocular vision and priori data based intelligent pose   measurement method of large aerospace cylindrical components. May   2023,Journal of Intelligent Manufacturing.DOI: 10.1007/s10845-023-02143-y u  Shuang   Meng, Lianyu Zheng, Wei Fan, Jian Zhou. Intelligent layout optimization of reconfgurable fexible   fxture for assembling multiple aircraft panels. The International   Journal of Advanced Manufacturing Technology, March 2023 u  Jian Zhou, Lianyu Zheng, Wei Fan, et al. Adaptive hierarchical positioning error compensation for   long-term service of industrial robots based on incremental learning with   fixed-length memory window and incremental model reconstruction.   Robotics and Computer-Integrated Manufacturing ,May 2023. DOI: 10.1016/j.rcim.2023.102590 u  Xinyu   Liu, Lianyu Zheng*, Yiwei Wang, et al. Human-centric collaborative assembly   system for large-scale space deployable mechanism driven by Digital Twins and   wearable AR device. Journal of Manufacturing System, 2022 https://doi.org/10.1016/j.jmsy.2022.11.007 u  Xiong   Zhao, Lianyu Zheng*, Yahui Wang, et al. Services-oriented intelligent milling   for thin-walled parts based on time-varying information model of machining.   International Journal of Mechanical Science, 2022. u  Yahui   Wang, Lianyu Zheng, Yiwei Wang*. Event-driven tool condition monitoring   methodology considering tool life prediction based on industrial internet.   Journal of Manufacturing Systems 58 (2021) 205–222 u  Yiwei   Wang, Lei Deng, Lianyu Zheng*,Robert Gao. Temporal convolutional   network with soft thresholding and attention mechanism for machinery   prognostics. Journal of Manufacturing Systems 58 (2021) 205–222 u  Xiong   Zhao, Lianyu Zheng*, Lu Yu, In-process adaptive milling for large-scale   assembly interfaces of a vertical tail driven by real-time vibration data,   Chinese Journal of Aeronautics (2021), doi: https:// doi.org/10.1016/j.cja.2021.01.025 u  Xiong   Zhao, Lianyu Zheng*. Online First-Order Machining Error Compensation for   Thin-Walled Parts Considering Time-Varying Cutting Condition. Journal of   Manufacturing Science and Engineering, 144 (2021): 021006-1~021006-11. u  Yiwei   WANG, Jian Zhou, Lianyu Zheng*, Christian GOGU.An end-to-end fault   diagnostics method based on convolutional neural network for rotating   machinery with multiple case studies.Journal of Intelligent   Manufacturing,2020 u  Wang   Qilong, Wei Wang*, Lianyu Zheng, Chao Yun. Force control-based vibration   suppression in robotic grinding of large thin- wall shells. Robotics and   Computer-Integrated Manufacturing August 2020. u  Wei   Fan, Wei Ji, Lihui Wang*,Lianyu Zheng, Yahui Wang. A Review on Cutting Tool   Technology in Machining of Ni-Based Superalloys.International Journal of   Advanced Manufacturing Technology,September 2020. u  Shufei   Li, Pai Zheng, Lianyu Zheng*. An AR-Assisted Deep Learning Based Approach for   Automatic Inspection of Aviation Connectors. IEEE Transactions on Industrial   Informatics,2020,DOI: 10.1109/TII.2020.3000870. u  Lianyu   Zheng*, Xinyu Liu, Zewu An,et al. A smart assistance system for cable   assembly by combining wearable augmented reality with portable visual   inspection.Virtul Reality and Intelligent Hardware.February 2020,DOI:   10.1016/j.vrih.2019.12.002 u  Wei   Fan, Lianyu Zheng*,et al. A machining accuracy informed adaptive positioning   method for finish machining of assembly interfaces of large-scale aircraft   components. Robotics and Computer Integrated Manufacturing 67 (2021) 102021.   https://doi.org/10.1016/j.rcim.2020.102021  u  Wei   Fan, Lianyu Zheng*,et al. Function block-based closed-loop adaptive machining   for assembly interfaces of large-scale aircraft components.Robotics and   Computer Integrated   Manufacturing,2020,https://doi.org/10.1016/j.rcim.2020.101994 u  Zewu   An, Yiwei Wang, Lianyu Zheng*. Adaptive Recognition of Intelligent Inspection   System for Cable Brackets in Multiple Assembly Scenes.The International   Journal of Advanced Manufacturing Technology. 2020,108(11):3373-3389. DOI:   10.1007/s00170-020-05591-5  u  Jian   Zhou Lianyu Zheng,Yiwei Wang*,Christian Gogu.A multistage deep transfer learning   method for machinery fault diagnostics across diverse working conditions and   devices.IEEE Access,2020,DOI: 10.1109/ACCESS.2020.2990739. u  Wei   Fang, Lianyu Zheng*. Shop-floor data-driven spatial-temporal verification for   manual assembly planning. Journal of Intelligent Manufacturing.2019, online   12 Stempber 2019. u  Wei   Fan, Lianyu Zheng*, et.al. Eddy Current-Based Vibration Suppression for   Finish Machining of Assembly Interfaces of Large Aircraft Vertical   Tail.Journal of Manufacturing Science and Engineering,   2019,141:071012-1~071012-16. u  Hongbo   Zhang, Lianyu Zheng*, et.al.Intelligent configuring for agile joint jig based   on smart composite jig model. The International Journal of Advanced   Manufacturing Technology. 2019, https://doi.org/10.1007/s00170-019-03803-1 u  Yong   Zhou,Jian-Jun Yang,Lianyu Zheng*.Multi-agent based hyper-heuristics for   multi-objective flexible job shop scheduling: A case study in an aero-engine   blade manufacturing plant.Feb 2019,IEEE Access.DOI   0.1109/ACCESS.2019.2897603, u  Yong   Zhou,Jian-Jun Yang*,Lianyu Zheng.Hyper-heuristic coevolution of machine   assignment and job sequencing rules for multi-objective dynamic flexible job   shop scheduling.Nov 2018,IEEE Access. u  Yahui   Wang, Lianyu Zheng*,Yu Hu, Wei Fan.MULTI-SOURCE HETEROGENEOUS DATA COLLECTION   AND FUSION FOR MANUFACTURING WORKSHOP BASED ON COMPLEX EVENT PROCESSING.48th   International Conference on Computers and Industrial Engineering (CIE 48),   Auckland, New Zealand, Dec. 2-5, 2018. u  Wei   Fan,Lianyu Zheng*,Yahui Wang.An automated reconfigurable flexible fixture for   aerospace pipeline assembly before welding. International Journal of   Advanced  Manufacturing Technology, 2018,   https://doi.org/10.1007/s00170-018-2120-9. u  Wei   Fang, Lianyu Zheng*.Rapid and robust initialization for monocular visual   inertial navigation within multi-state Kalman filter. Chinese Journal of   Aeronautics,2018,31(1):148-160. u  Pei   Lei, Lianyu Zheng*, Lihui Wang, et al. MTConnect compliant monitoring for   finishing assembly interfaces of large-scale components: A vertical tail   section application. Journal of Manufacturing Systems. 2017, 45: 121–134.   http:// dx.doi.org/10.1016/j.jmsy.2017.09.001 u  Wei   Fang, Lianyu Zheng*, Xiangyong Wu. Multi-sensor based real-time 6-DoF pose   tracking for wearable augmented reality. Computers in Industry,2017,92:91–103.   http://dx.doi.org/10.1016/j.compind.2017.06.002 u  Wei   Fang, Lianyu Zheng*, Jiaxing Xu. Self-contained optical-inertial motion   capturing for assembly planning in digital factory. International Journal of   Advanced  Manufacturing Technology, 2017, DOI:   10.1007/s00170-017-0526-4. u  Wei   Fang, Lianyu Zheng*, Huanjun Deng and Hongbo Zhang. Real-Time Motion Tracking   for Mobile Augmented/Virtual Reality Using Adaptive Visual-Inertial Fusion.   Sensors 2017, 17(5), 1037; doi:10.3390/s17051037 u  Pei   Lei, Lianyu Zheng*. An automated in-situ alignment approach for finish   machining assembly interfaces of large-scale components.Robotics and Computer   Integrated Manufacturing,2017,DOI:10.1016/j.rcim.2017.01.004 u  Pei   Lei, Lianyu Zheng*, et at. A closed-loop machining system for assembly   interfaces of large-scale component based on extended STEP-NC.International   Journal of Advanced  Manufacturing Technology. 2017, DOI:   10.1007/s00170-016-9904-6 u  Wei   Fang, Lianyu Zheng*, et al. Automatic 3D Model Acquisition for Unknown Objects   based on Hybrid Vision.International Journal of Precision Engineering and   Manufacturing. 2017,18(3):275-284. u  Wei   Fang, Lianyu Zheng*, Xusheng Zhu. A motion tracking method by combining of   IMU and camera in mobile devices. International Conference on Sensor   Technology, November,2016, Nanjing, China. DOI: 10.1109/ICSensT.2016.7796235 u  Hongbo   Zhang, Lianyu Zheng*, Xiwei Chen, Haiji Huang. A Novel Reconfigurable   Assembly Jig Based on Stable Agile Joints and Adaptive Positioning-Clamping   Bolts. 6th CIRP Conference   on Assembly Technologies and Systems   (CATS). Procedia CIRP 44 (2016): 316 –321。  u  Zhu   Xusheng, Zheng Lianyu*, Tang Xiaojun. Configuration optimization of laser   tracker stations for large-scale components in non-uniform temperature field   using Monte-Carlo method[C]. 9th CIRP International Conference on Digital   Enterprise Technology - DET 2016 – “Intelligent Manufacturing in the   Knowledge Economy Era. Nanjing, China, 2016.  Procedia CIRP, 2016,   56:261-266 u  Xiao   wenlei, Zheng Lianyu*, et al. A complete CAD/CAM/CNC solution for STEP-NC   enabled manufacturing, Robotics and Computer Integrated Manufacturing, 2015(31):1-10 u  Lei   Pei, Zheng Lianyu. Closed-loop calibration method of PPPS mechanism ball   joint center position for posture adjustment of large aircraft components. Hangkong   Xuebao/Acta Aeronautica et Astronautica Sinica, 2016, v 37, n 10, p 3186-3196; u  Zheng   Lian-Yu; Liu Qing-Jun; Zhang Hong-Bo. Rapid configuration for box-joint   assembly jigs based on composite tooling . Jisuanji Jicheng Zhizao Xitong/Computer   Integrated Manufacturing Systems, CIMS, 2013,v 20, n 10, p 2426-2439. u  Zheng   Lianyu, Zhu Xusheng, et al. A novel algorithm of posture best fit based on   key characteristics for large components assembly. Procedia CIRP 10, 2013,   162-168. u  Zhu,   Xusheng, Zheng, Lianyu. Multiple-objective optimization algorithm based on   key assembly characteristics to posture best fit for large component assembly.   Hangkong Xuebao/Acta Aeronautica et Astronautica Sinica, 2012,v 33, n 9, p   1726-1736 u  Zheng, L.-Y.,Liang, D.-W.,Lei, P.Research and   implementation of closed-loop machining technology based on STEP-NC. Jisuanji Jicheng Zhizao   Xitong/Computer Integrated Manufacturing Systems, CIMS. 2011,Volume   17, Issue 11, November 2011, Pages 2389-2398 u  Zheng, L.-Y.,Ji, L. Research and   implementation of tooling configuration for product family. Jisuanji Jicheng Zhizao   Xitong/Computer Integrated Manufacturing Systems, CIMS. Volume 17,   Issue 3, March 2011, Pages 585-594 u  Ni A.-J.,Zheng L.Y. Optimal   configuration method for large-scale measurement systems based on form error   uncertainty Jiliang Xuebao/Acta Metrologica   Sinica. Volume 32, Issue 4, July 2011, Pages 289-295. u  Key   characteristics management in product lifecycle management: A survey of   methodologies and practices. Proceedings of the Institution of Mechanical Engineers   Part B:Journal of Engineering Manufacture,2008,222(B8):989-1008. u  Systematic   modeling and reusing of process knowledge for rapid process configuration.   Robotics and Computer Integrated Manufacturing,2008,24(6):763-772. u  Zheng, L.-Y.,Wang, S.-C. Approaches to   improve the process quality of thin-walled workpiece in NC machining.Hangkong Xuebao/Acta Aeronautica   et Astronautica Sinica. Volume 22, Issue 5, September 2001, Pages   424-428   u Awards u  1997   Progressive Science and Technology Award (the third grade) from Chinese Aviation   Industry Company u  2003   Excellent Youth Paper Award (the third grade) from the Beijing Society of   Science and Technology u  2008   Progressive Science and Technology Award (the second grade) from the Ministry   of Industry and Information Technology (MIIT) of China. u  2008   Progressive Science and Technology Award (the second grade) from Chinese Aviation   Industry Company . u  2010   Excellent Teaching Achievement (the second grade), Awarded by Beihang   University u  2013   Excellent Supervisor of MSc thesis, awarded by Beihang University ◆  2014   Excellent Teaching Achievement (the first grade), Awarded by Beihang   University u  2015   High Cited paper of Acta Aeronautica Et Astronautica Sinica u  2016   Excellent Paper of Acta Metrogia Sinaica u  2016   Excellent Course for Foreign Students 《Introduction to Advanced   Manufacturing Technology》 u Main software copyrights and patents Software: [1] Knowledge System for Process Failure Mode and Effect   Analysis(PFMEA). Copyright No: 2005SRBJ0305 [2] Registration System of Manufacturing Metadata. Copyright No:   2006SRBJ0907 [3] Visual Process Planning System V1.0(VISPP).   Copyright No: 2008SRBJ0882 [4] Rapid Configuration and Management System of Tooling   Resource for Product Family(RTCMS). Copyright No: 2010SRBJ0098 [5] Integrated Large-Volume Measurement Software System (ILVMS).   Copyright No:2012SR015505 [6] Design System for Box-joint based Reconfigurable Tooling.   Copyright No: 2013SR059108 [7] Process and Fixture Design Software for Body-In-White   Assembly and Welding. Copyright No: 2014SR181801 [8] Intelligent adjusting and monitoring for Box-joint based   Reconfigurable Tooling.Copyright No 12018R11L112366 [9] Device interconnection and data processing software. Copyright   No: 2019SR0529723 [10] Visual inspection software for assembly   status of aircraft cable supports. Copyright No: 2019SR1402243 [11] A   Digital Twin System for Combining Edge Cloud and Operation and Maintenance of   Rotating Machinery Equipment. Copyright No: 2020SR0731607 [12] Collaborative   Assembly and Adjustment System for Large-Scale Deployment Mechanisms Assisted   by Wearable Devices. V1.0. Copyright No: 2021SR1856656 [13] Visual   monitoring software for the assembly process of large slender cylindrical   components. V1.0 Copyright No: 2023SR0102613 [14] Software   for in-situ visual measurement of the pose of large slender cylindrical   components. V1.0 Copyright No: 2023SR0102612 [15] Management and control software for off-machine presetting station. Copyright No: 2023SR0694473 [16] Adaptive machining software for thin-walled parts. V1.0   Copyright No: 2023SR0630221 [17] Multi   source heterogeneous data perception and fusion software for cabin docking   process. V1.0. Copyright No: 2023SR0762027. [18] Intelligent   control software for multi machine collaborative machining units. V1.0. Copyright   No: 2023SR0762026.   Patents: [1] A reconfigurable tooling for multiple tubes assembly and   welding. Patent No:ZL201110279402.6 [2] An automatic configuration method and system of   reconfigurable tooling for tubes assembly and welding. Patent No:ZL   201110444781.X [3] A robot posture algorithm for flexible tube assembly and   welding based on vision measurement data. Patent No:ZL20141   07377530 [4] A cutting position algorithm of tube allowance for flexible   assembly and welding. Patent No:ZL2014107303895 [5] A automatic spots grouping method for body-in-white based on   sphere interference. Patent No:ZL2014107302680 [6] A   self-locking pneumatic electric drive auxiliary support device. Patent No:ZL201520195582.3 [7] A fixed stroke cam clamping device with monitoring clamping   force. Patent No:ZL201520195411.0 [8] Measurement network construction for assembly interfaces   machining of large-scale components. Patent No:201510641527.7 [9] Mobile controlling method and system for Laser tracker using   smart glass. Patent No:ZL201610610104.3 [10] A mobile controlled laser tracker system based on a mobile   server architecture. Patent No:ZL 2016 1 0610428.7 [11] A Least Squares Based Optimization Layout Method for   Aircraft Assembly Frame Skeleton. Patent No:ZL 201711032624.1 [12] An Image Acquisition Device for Aviation Wire Number   Recognition Based on Monocular Vision. Patent No:ZL   201810945551.3 [13] A   method for identifying aviation plug hole positions based on deep learning   and multi-objective distribution sorting. Patent No:ZL   201910264451.9 [14] A   Visual Based Method for Detecting the Assembly Status of Aircraft Cable   Supports. Patent No:ZL 2019 1 0434969.2 [15] Assembly State Perception Method Based on Wearable Devices,   Scenarios, and Digital Analog Registration. Patent No:ZL202111122117.3 [16] Microgravity assembly system and method based on   collaborative robots and wearable devices. Patent No:ZL201810945551.3 [17] A   Method for Aircraft Cable Support Recognition and Parameter Acquisition Based   on Deep Learning and Binocular Stereo Vision. Patent No:2019104349777 [18] A   method and system for multi-source heterogeneous data fusion in manufacturing   workshops based on complex event processing. Patent No:2019104971445 [19] A   Parallel Intelligent Robot with Automatic Guidance Function and Its Guidance   Method. Patent No:2019112524369 [20] A Monitoring System and Method for   Product Intelligent Assembly Production Line Based on FPGA. Patent No:2019112519604 [21] An   Automatic Search Method for Rotating Machinery Diagnosis Network Based on   Reinforcement Learning. Patent No:ZL202110234810.3 [22] A   Hybrid Shrinkage Method for Residual Life Prediction of Rotating Machinery   Based on Adversarial Training and Transfer Learning. Patent   No:ZL202110234849.5 [23] An   Efficient Search Method for Layered Multibranch Network Structure for Fault   Diagnosis of Rotating Machinery. Patent No:ZL202110253852.1 [24] A Low   Temperature Salt Bath Chromizing Method for 304 Stainless Steel. Patent No:ZL202111251551.1 [25] In-situ   Pose Measurement Method for Large Cylinders Based on Binocular Vision and   Prior Processing Data. Patent No:ZL202111224890.0 [26] An   error compensation method for industrial robots based on incremental learning   with fixed length memory windows. Patent No:202210637360.7 [27] A   method for adjusting the robotic scanning measurement path of large cylinder   local features. Patent No:202310577100.X [28] A   New Location Finding Processing System and Method for Large and Thin walled   Parts with Multiple Varieties. Patent No:CN202210911709.1 [29] An   Adaptive Compensation Method for Industrial Robot Positioning Error Based on   Composite Branch Neural Network. Application No:CN202211368818.X [30] A   reconfigurable flexible frame for pre assembly of wall panels. Application No:CN202310084545.4 [31] A   Multi-robot Collaborative Task Scheduling Method Based on Graph Convolutional   Strategy Gradient. Application No:CN202310607252.X [32] A   Fast Margin Calculation Method for Large Aspect Ratio Cylinder Assembly   Interface Based on Point Cloud Data. Application No:CN202310936808.X [33] Modeling   Method for Robot Milling Stability Driven by Hybrid Data Mechanism. Application No:CN2023112501132    |