胡洁 特聘教授
邮箱:hujie@sjtu.edu.cn
工作单位:上海交通大学
研究方向:创新设计、智能设计
个人介绍
上海交通大学特聘教授、博士生导师,国家“万人计划”科技创新领军人才、教育部“长江学者奖励计划”特聘教授、科技部中青年科技创新领军人才,国家社科基金重大项目“设计形态学研究”首席专家,国家重点研发计划项目首席科学家,国家自然科学基金重点项目负责人,上海交通大学设计学院首任执行院长、创新设计研究院院长、全球创新研究院院长、工业设计国家一流专业负责人、“设计学”博士点负责人,上海交通大学本科教学指导委员会委员、重庆巴渝学者讲座教授。中国工业设计协会副会长、科协全国委员会委员、上海市闵行区政协副主席、上海市现代设计法研究会理事长、上海经信委人工智能专家、中国工业设计十佳教育工作者、中国设计年度人物。研究方向为创新设计、智能设计等。
成果概况
以项目负责人主持了1项国家社科基金重大项目(首席专家)、8项国家自然科学基金(包括1项重点项目)、1项国家重点研发项目、1项国家973计划课题(结题优秀)、1项国家863计划、2项国家重大科学仪器设备开发专项课题、1项科技部创新方法工作专项、5项省部级人才项目、10项省部级项目、2项国际合作项目等,累计经费6535万元。
研究成果获得了上海市科技进步一等奖,先后入选教育部“新世纪优秀人才支持计划”(2008)、上海市白玉兰科技人才计划(2011)、上海市曙光学者人才计划(2013)、上海市优秀技术带头人计划(2016)、教育部“长江学者奖励计划”青年学者(2018)、中国设计年度人物(2020)、教育部“长江学者奖励计划”特聘教授(2021)、国家“万人计划”科技创新领军人才(2021)。出版著作7部,发表论文213篇,SCI他引943次,Google学术他引1725次。授权发明专利21项、软件著作权22项。
主讲本硕博课程共50门次,致远荣誉核心课程、国家本科一流课程《创新思维与现代设计》负责人,教学成果两次获上海交通大学优秀教师奖,教改成果获得上海市高等教育教学成果奖一等奖、上海交通大学校级教学成果奖特等奖。指导博士生32名、硕士生28名。
荣誉奖励
1.2007年获得上海市科技进步一等奖
2.2008年入选教育部“新世纪优秀人才支持计划”
3.2009年入选上海交通大学SMC优秀青年教师A类计划
4.2009年获得上海交通大学优秀教师奖
5.2011年入选上海白玉兰科技人才计划
6.2013年入选上海市曙光学者人才奖励计划
7.2016年入选上海市优秀技术带头人计划
8.2017年获得上海交通大学校级教学成果奖特等奖
9.2017年获得上海市高等教育教学成果奖一等奖
10.2018年入选教育部“长江学者奖励计划”青年学者
11.2019年入选上海交通大学凯原十佳教师
12.2021年入选中国设计年度人物
13.2021年入选教育部“长江学者奖励计划”特聘教授
14.2021年入选国家“万人计划”科技创新领军人才
发表论文(仅列出SCI检索的论文)
1.Zhao Qiaoyou, Gao Le, Wu Duidi, Meng Xinyao, Qi Jin, Hu Jie. E-GTN: Advanced Terrain Sensing Framework for Enhancing Intelligent Decision Making of Excavators[J]. Applied Sciences, 2024, 14(16): 6974. (SCI影响因子:2.5)
2.Guo Meixing, Fang Mingzhu, Wang Lingyu, Hu Jie, Qi Jin. Performance Optimization Design Study of Box-Type Substations Subjected to the Combined Effects of Wind, Snow, and Seismic Loads[J]. Applied Sciences, 2024, 14(10): 3958. (SCI影响因子:2.5)
3.Jia Miao, Jiang Shuo, Qi Jin, Hu Jie. Mapping Novice Designer Behavior to Design Fixation in the Early-Stage Design Process[J]. Journal of Mechanical Design, 2024: 146(09): 091401. (SCI影响因子:2.5)
4.Wu Duidi, Wu Shuangdui, Zhao Qianyou, Zhang Shuo, Qi Jin, Hu Jie Hu, Lin Borong. Computer vision-based intelligent elevator information system for efficient demand-based operation and optimization[J]. Journal of Building Engineering, 2024. 81: 108126. (SCI影响因子:6.7)
5.Li Guangxu, Wang Lingyu, Hu Jie. Integration with Visual Perception—Research on the Usability of a Data Visualization Interface Layout in Zero-Carbon Parks Based on Eye-Tracking Technology[J]. Sustainability, 2023, 15(14): 11102. (SCI影响因子:3.3)
6.Zhang Shuo, Hong Chengan, Huang Haiqing, Wu Duidi, Zhao Qianyou, Qi Jin, Hu Jie, Peng Yinghong. Real-time Speed Monitoring of Elevator System Based on Low-cost IMU. IEEE Sensors Journal, 2023, 23(15): 17559-17571. (SCI影响因子:4.3)
7.Qi Jin, Hu Jie, Peng Yinghong. Conceptual design evaluation using interval intuitionistic fuzzy-Z-number for multiple uncertain information from decision-maker. International Journal of Fuzzy Systems, 2023, 25(8): 3119-3143. (SCI影响因子:3.6)
8.Wang Lingyu, YanXingyun, Fang Mingzhu, Song Hua, Hu Jie. A Systematic Design Framework for Zero Carbon Campuses: Investigating the Shanghai Jiao Tong University Fahua Campus Case[J]. Sustainability, 2023, 15(10): 7975. (SCI影响因子:3.3)
9.Chen Biao, Zhou Yang, Chen Chaoyang Chen, Sayeed Zain, Hu Jie, Qi Jin, Frush Todd, Goitz Henry, Hovorka John, Cheng Mark, Palacio Carlos. Volitional control of upper-limb exoskeleton empowered by EMG sensors and machine learning computing[J]. Array, 2023, 17: 100277. (SCI影响因子:2.3)
10.Zuo Yaxue, Qi Jin, Fan Zhijun, Wang Zhenya, Xu Huiyun, Wang Shurui, Zhang Nieqiang, Hu Jie. The influence of target layout and target graphic type on searching performance based on eye-tracking technology. Frontiers in Psychology, 2023, 14: 1052488. (SCI影响因子:2.6)
11.Yan Xingyun, Wang Lingyu, Fang Mingzhu, Hu Jie. How Can Industrial Parks Achieve Carbon Neutrality? Literature Review and Research Prospect Based on the CiteSpace Knowledge Map. Sustainability, 2023,15(1):372.(SCI影响因子:3.3)
12.Qi Jin, Hu Jie, Huang Haiqing, Peng Yinghong. New customer-oriented design concept evaluation by using improved Z-number-based multi-criteria decision-making method. Advanced Engineering Informatics, 2022, 53: 101683. (SCI影响因子:5.603)
13.Chen Biao, Chen Chaoyang, Hu Jie, Nguyen Thomas, Qi Jin, Yang Banghua, Chen Dawei, Alshahrani Yousef, Zhou Yang, Tsai Andrew, Frush Todd, Goitz Henry. A Real-Time EMG-Based Fixed-Bandwidth Frequency-Domain Embedded System for Robotic Hand. Frontiers in Neurorobotics, 2022: 147. (SCI影响因子:3.493)
14.Jiang Shuo, Hu Jie, Magee Christopher L, Luo Jianxi. Deep learning for technical document classification. IEEE Transactions on Engineering Management, 2022, 1-17. (SCI影响因子:6.146)
15.Jiang Shuo, Hu Jie, Wood Kristin L, Luo Jianxi. Data-Driven Design-By-Analogy: State-of-the-Art and Future Directions. Journal of Mechanical Design, 2022, 144(2): 020801.(SCI影响因子:3.251)
16.Liu Wenhai, Wang Weiming, You Yang, Xue Teng, Pan Zhenyu, Qi Jin, Hu Jie. Robotic picking in dense clutter via domain invariant learning from synthetic dense cluttered rendering. Robotics and Autonomous Systems, 2022, 147: 103901.(SCI影响因子:3.12)
17.Zhu Guoniu, Ma Jin, Hu Jie. A fuzzy rough number extended AHP and VIKOR for failure mode and effects analysis under uncertainty. Advanced Engineering Informatics, 2022, 51: 101454. (SCI影响因子:5.603)
18.Chen Bin, Hu Jie, Chen Weixing. A graph-based computational algorithm for the conceptual design synthesis in the distributed resource environment. Journal of Engineering Research, 2021, 9(4B): 234-252.(SCI影响因子:0.435)
19.Qi Jin, Hu Jie. Peng Yinghong. A customer-involved design concept evaluation based on multi-criteria decision-making fusing with preference and design values. Advanced Engineering Informatics, 2021,50:101373.(SCI影响因子:5.603)
20.Qi Jin, Hu Jie. Peng Yinghong. Information-intensive design solution evaluator combined with multiple design and preference information in product design. Information Sciences. 2021, 570: 360-382.(SCI影响因子:6.795)
21.Qi Jin, Hu Jie, Peng Yinghong. Modified rough VIKOR based design concept evaluation method compatible with objective design and subjective preference factors. Applied Soft Computing. 2021, 107: 107414.(SCI影响因子:6.725)
22.Zhu Siyu, Qi Jin, Hu Jie, Huang Haiqing. Intelligent product redesign strategy with ontology-based fine-grained sentiment analysis. AI EDAM, 2021, 35(3): 295-315.(SCI影响因子:1.671)
23.Zhu Guoniu, Ma Jin, Hu Jie. Evaluating biological inspiration for biologically inspired design: An integrated DEMATEL‐MAIRCA based on fuzzy rough numbers. International Journal of Intelligent Systems, 2021, 36(10): 6032-6065.(SCI影响因子:8.709)
24.Jiang Shuo, Luo Jianxi, Ruiz-Pava Guillermo, Hu Jie, Magee Christopher L.Deriving design feature vectors for patent images using convolutional neural networks. Journal of Mechanical Design, 2021, 143(6): 061405.
25.Zhu Guoniu, Hu Jie. A rough‐Z‐number‐based DEMATEL to evaluate the co‐creative sustainable value propositions for smart product‐service systems. International Journal of Intelligent Systems, 36 (8) (2021) 3645–3679.(SCI影响因子:8.709)
26.Chen Bin, Hu Jie, Chen Weixing, Qi Jin. Scalable multi-process inter-server collaborative design synthesis in the Internet distributed resource environment. Advanced Engineering Informatics, 2021, 47: 101251.(SCI影响因子:5.603)
27.Chen Bin, Hu Jie, Qi Jin, Chen Weixing. Concurrent multi-process graph-based design component synthesis: Framework and algorithm. Engineering Applications of Artificial Intelligence, 2021, 97: 104051.(SCI影响因子:6.212)
28.Fang Yi, Qi Jin, Hu Jie, Peng Yinghong. An approach for jerk-continuous trajectory generation of robotic manipulators with kinematical constraints. Mechanism and Machine Theory, 2020, 153: 103957.(SCI影响因子:3.517)
29.Qi Jin, Hu Jie, Peng Yinghong. Integrated rough VIKOR for customer-involved design concept evaluation combining with customers' preferences and designers' perceptions. Advanced Engineering Informatics, 2020, 46: 101138.(SCI影响因子:5.603)
30.Qi Jin, Hu Jie, Peng Yinghong.New design concept evaluation method involving customer preferences based on rough distance to redefined ideal solution. Computers & Industrial Engineering. 2020, 147, 106677.(SCI影响因子:5.431)
31.Wang Weiming, Liu Wenhai , Hu Jie, Fang Yi, Shao Quanquan, Qi Jin. GraspFusionNet: a two-stage multi-parameter grasp detection network based on RGB–XYZ fusion in dense clutter. Machine Vision and Applications, 2020, 31(7): 1-19.(SCI影响因子:2.012)
32.Liu, Wenhai, Hu Jie, Wang Weiming. A novel camera fusion method based on switching scheme and occlusion-aware object detection for real-time robotic grasping. Journal of Intelligent & Robotic Systems, 2020,100: 791-808.(SCI影响因子:2.646)
33.Zhu Guoniu, Hu Jie, Ren Hongliang. A fuzzy rough number-based AHP-TOPSIS for design concept evaluation under uncertain environments. Applied Soft Computing, 2020, 91: 106228. (SCI影响因子:6.725)
34.Chen Biao, Zhang Boshen, Chen Chaoyang, Hu Jie, Qi Jin, He Tao, Tian Pan, Zhang Xinuo, Ni Guoxin,Cheng, Mark Ming-Cheng. Penetrating glassy carbon neural electrode arrays for brain-machine interfaces. Biomedical Microdevices, 2020, 22(3): 43-43. (SCI影响因子:2.838)
35.Shao Quanquan, Hu Jie, Wang Weiming, Fang Yi, Xue Teng, Qi Jin. Location Instruction-Based Motion Generation for Sequential Robotic Manipulation. IEEE Access, 2020, 8: 26094-26106.(SCI影响因子:3.367)
36.Chen Bin, Hu Jie, Chen Weixing, Qi Jin. Geometrical Analysis of Connecting Beam Mandala: A Planar Deployable Mechanism. Journal of Mechanisms and Robotics, 2020, 12(1): 011009.(SCI影响因子:2.085)
37.Chen Bin, Hu Jie, Qi Jin, Chen Weixing. A computer-aided approach improving the Axiomatic Design theory with the distributed design resource environment. AI EDAM, 2020, 34(1): 80-103.(SCI影响因子:1.671)
38.Shao Quanquan, Qi Jin, Ma Jin, Fang Yi, Wang Weiming, Hu Jie. Object Detection-Based One-Shot Imitation Learning with an RGB-D Camera. Applied Sciences, 2020, 10(3): 803.(SCI影响因子:2.679)
39.Shao Quanquan, Hu Jie, Wang Weiming, Fang Yi, Han Mingshuo, Qi Jin, Ma Jin.Composable Instructions and Prospection Guided Visuomotor Control for Robotic Manipulation. International Journal of Computational Intelligence Systems, 2019, 12(2): 1221-1231.(SCI影响因子:1.736)
40.Fang Yi, Hu Jie, Liu Weijie, Shao Quanquan, Qi Jin, Peng Yinghong. Smooth and time-optimal S-curve trajectory planning for automated robots and machines. Mechanism and Machine Theory, 2019, 137: 127-153.(SCI影响因子:3.517)
41.Fang Yi, Hu Jie, Qi Jin, Liu Weijie, Wang Weiming, Peng Yinghong. Planning trigonometric frequency central pattern generator trajectory for cyclic tasks of robot manipulators. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2019, 233(11): 4014-4031.(SCI影响因子:1.762)
42.He Tao, Sun Yasheng, Chen Biao, Qi Jin, Liu Weijie, Hu Jie. Plug-and-play inertial forward–backward algorithm for Poisson image deconvolution. Journal of Electronic Imaging, 2019, 28(4): 043020.(SCI影响因子:0.945)
43.Chen Bin, Hu Jie, Chen Weixing. DRE-based semi-automation of the axiomatic design transformation: from the functional requirement to the design parameter. Journal of Engineering Design, 2019, 30(7): 255-287.(SCI影响因子:2.588)
44.He Tao, Sun Yasheng, Qi Jin, Hu Jie, Huang Haiqing. Image deconvolution for confocal laser scanning microscopy using constrained total variation with a gradient field. Applied optics, 2019, 58(14): 3754-3766.(SCI影响因子:1.980)
45.He Tao, Sun Yasheng, Qi Jin, Huang Haiqing, Hu Jie. Fast-time consecutive confocal image deblurring using spatiotemporal fused regularization. Applied optics, 2019, 58(19): 5148-5158.(SCI影响因子:1.980)
46.He Tao, Hu Jie, Huang Haiqing. Hybrid high-order nonlocal gradient sparsity regularization for Poisson image deconvolution. Applied optics, 2018, 57(35): 10243-10256.(SCI影响因子:1.980)
47.Qi Jin, Hu Jie, Peng Yinghong. An integrated principle solution synthesis method in multi-disciplinary mechatronic product conceptual design. Concurrent Engineering, 2018, 26(4): 341-354.(SCI影响因子:1.038)
48.Wang Weiming, Chen Biao, Xia Peng, Hu Jie, Peng Yinghong. Sensor fusion for myoelectric control based on deep learning with recurrent convolutional neural networks. Artificial Organs, 2018, 42(9): E272-E282.(SCI影响因子:3.094)
49.Qi Jin, Hu Jie. Multivariable case-based reason adaptation based on multiple-output support vector regression with similarity-related weight for parametric mechanical design. Advances in Mechanical Engineering, 2018, 10(10): 1687814018804649.(SCI影响因子:1.316)
50.Tian Pan, Yi Wenwen, Chen Chaoyang, Hu Jie, Qi Jin, Zhang Bosheng, Cheng Mark Ming-Cheng. Flexible 3D carbon nanotubes cuff electrodes as a peripheral nerve interface. Biomedical Microdevices, 2018, 20: 21.(SCI影响因子:2.838)
51.Xia Peng, Hu Jie, Peng Yinghong. EMG‐based estimation of limb movement using deep learning with recurrent convolutional neural networks. Artificial organs, 2018, 42(5): E67-E77.(SCI影响因子:3.094)
52.Tian Pan, Chen Chaoyang, Hu Jie, Qi Jin, Wang Qianghua, Chen Jimmy Ching-Ming, Cavanaugh John, Peng Yinghong, Cheng Mark Ming-Cheng. A novel fabrication method of carbon electrodes using 3D printing and chemical modification process. Biomedical Microdevices, 2018, 20: 4.(SCI影响因子:2.838)
53.Qi Jin, Hu Jie, Peng Yinghong. A modularized case adaptation method of case-based reasoning in parametric machinery design. Engineering Applications of Artificial Intelligence, 2017, 64: 352-366. (SCI影响因子:6.212)
54.Zhu Guoniu, Hu Jie, Qi Jin, He Tao,Peng Yinghong. Change mode and effects analysis by enhanced grey relational analysis under subjective environments. AI EDAM, 2017, 31(2): 207-221.(SCI影响因子:1.671)
55.Tian Pan, Hu Jie, Qi Jin, Ye Xian, Che Dading, Ding Ying, Peng Yinghong. A hierarchical classification method for automatic sleep scoring using multiscale entropy features and proportion information of sleep architecture. Biocybernetics and Biomedical Engineering, 2017, 37(2): 263-271.(SCI影响因子:4.314)
56.Hu Jie, Ma Jin, Feng Jinfeng, Peng Yinghong. Research on new creative conceptual design system using adapted case-based reasoning technique. AI EDAM, 2017, 31(1): 16-29.(SCI影响因子:1.671)
57.Zheng Kai, Yang Ren-Jye, Xu Hongyi, Hu Jie. A new distribution metric for comparing Pareto optimal solutions. Structural and multidisciplinary Optimization, 2017, 55(1): 53-62.(SCI影响因子:4.542)
58.Yang Junqi, Zhan Zhenfei, Zheng Kai, Chen Chong, Hu Jie, Zheng Ling. An uncertainty representation based sampling method for metamodeling in auto-motive design applications. Journal of Mechanical Science and Technology, 2016, 30(10): 4645-4655.(SCI影响因子:1.734)
59.Ma Jin, Hu Jie, Feng, Jinfeng, Qi Jin, Peng Yinghong. Constrained FBS knowledge cell model, representation, and applications for conceptual design. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2016, 230(11): 1773-1786.(SCI影响因子:1.762)
60.Yang Junqi, Zhan Zhenfei, Zheng Kai, Hu Jie, Zheng Ling. Enhanced similarity-based metamodel updating strategy for reliability-based design optimization. Engineering Optimization, 2016, 48(12): 2026-2045.(SCI影响因子:3.230)
61.Qi Jin, Hu Jie, Peng Yinghong.Hybrid weighted mean for CBR adaptation in mechanical design by exploring effective, correlative and adaptative values. Computers in Industry, 2016, 75: 58-66.(SCI影响因子:7.635)
62.Xia Peng, Hu Jie, Peng Yinghong. Adaptation to phosphene parameters based on multi‐object recognition using simulated prosthetic vision. Artificial organs, 2015, 39(12): 1038-1045.(SCI影响因子:3.094)
63.Gu Chaochen, Hu Jie, Wu Kaijie, Zhu Guoniu, Peng Yinghong. Quantitative behavioral knowledge modeling for functional case adaptation. Research in Engineering Design, 2015, 26(4): 309-326.(SCI影响因子:2.655)
64.Zhu Guoniu, Hu Jie, Qi Jin, Peng Yinghong. An integrated AHP and VIKOR for design concept evaluation based on rough number. Advanced Engineering Informatics. 2015, 29(3): 408-418.(SCI影响因子:5.603)(ESI高被引论文)
65.Hu Jie, Zheng Kai. A novel support vector regression for data set with outliers. Applied Soft Computing. 2015, 31: 405–411.(SCI影响因子:6.725)
66.Gu Chaochen, Wu Kaijie, Hu Jie, Hao Cheng, Guan Xinping. Region sampling for robust and rapid autofocus in microscope. Microscopy research and technique, 2015, 78(5): 382-390.(SCI影响因子:2.769)
67.Zhu Guoniu, Hu Jie, Qi Jin, Ma Jin, Peng Yinghong.. An integrated feature selection and cluster analysis techniques for case-based reasoning. Engineering Applications of Artificial Intelligence, 2015, 39: 14-22.(SCI影响因子:6.212)
68.Tian Pan, Hu Jie, Qi Jin, Xia Peng, Peng Yinghong. Application of multi-output support vector regression on EMGs to decode hand continuous movement trajectory. Bio-medical materials and engineering, 2015, 26(s1): S575-S582.(SCI影响因子:1.300)
69.Xia Peng, Hu Jie, Qi Jin, Gu Chaochen, Peng Yinghong. MEMS-based system and image processing strategy for epiretinal prosthesis. Bio-medical materials and engineering, 2015, 26(s1): S1257-S1263.(SCI影响因子:1.300)
70.Hu Jie, Qi Jin, Peng Yinghong. New CBR adaptation method combining with problem–solution relational analysis for mechanical design. Computers in Industry. 2015, 66: 41-51.(SCI影响因子:7.635)(ESI高被引论文)
71.Qi, Jin, Hu, Jie, Peng, Yinghong, A modularized case adaptation method of case-based reasoning in parametric machinery design, Engineering Applications of Artificial Intelligence,2017,64: 352-366.(SCI影响因子:6.212)
72.Hu Jie, Qi Jin, Peng Yinghong. Predicting electrical evoked potential in optic nerve visual prostheses by using support vector regression and case-based prediction. Information Sciences. 2015,290: 7–21.(SCI影响因子:6.795)
73.Zheng Kai, Hu Jie, Zhan Zhenfei, Ma Jin, Qi Jin. An enhancement for heuristic attribute reduction algorithm in rough set. Expert Systems with Applications, 2014, 41(15): 6748-6754.(SCI影响因子:6.954)
74.Guo Yuan, Hu Jie, Peng Yinghong. Research of new strategies for improving CBR system. Artificial Intelligence Review, 2014, 42(1): 1-20.(SCI影响因子:8.139)
75.Wang Weiming, Peng Xun, Zhu Guoniu, Hu Jie, Peng Yinghong. Dynamic representation of fuzzy knowledge based on fuzzy petri net and genetic-particle swarm optimization. Expert Systems with Applications, 2014, 41(4): 1369-1376.(SCI影响因子:6.954)
76.Hu Jie, Xia Peng, Gu Chaochen, Qi Jin, Li Sheng, Peng Yinghong. Recognition of similar objects using simulated prosthetic vision. Artificial organs, 2014, 38(2): 159-167.(SCI影响因子:3.094)
77.Huang Haiqing, Fang Xiangzong, Shi Jun, Hu Jie. Abnormal localization of immature precursors (ALIP) detection for early prediction of acute myelocytic leukemia (AML) relapse. Medical & biological engineering & computing, 2014, 52(2): 121-129.(SCI影响因子:2.602)
78.Ma Jin, Hu Jie, Zheng Kai, Peng Yinghong. Knowledge-based functional conceptual design: Model, representation, and implementation. Concurrent Engineering, 2013, 21(2): 103-120.(SCI影响因子:1.038)
79.Qi Jin, Hu Jie, Peng Yinghong, Chai Xinyu, Ren Qiushi. Case based time series prediction using biased time warp distance for electrical evoked potential forecasting in visual prostheses. Applied Soft Computing, 2013, 13(5): 2467-2477.(SCI影响因子:6.725)
80.Lu Yanyu, Kan Han, Liu Jie, Wang Jing, Tao Chen, Chen Yao, Ren Qiushi, Hu Jie, Chai Xinyu. Optimizing Chinese character displays improves recognition and reading performance of simulated irregular phosphene maps. Investigative ophthalmology & visual science, 2013, 54(4): 2918-2926.(SCI影响因子:4.799)
81.Guo Yuan, Peng Yinghong, Hu Jie. Research on high creative application of case-based reasoning system on engineering design. Computers in Industry, 2013, 64(1): 90-103.(SCI影响因子:7.635)
82.Guo Yuan, Hu Jie, Peng Yinghong. A CBR system for injection mould design based on ontology: a case study. Computer-Aided Design, 2012, 44(6): 496-508.(SCI影响因子:3.027)
83.Qi Jin, Hu Jie, Peng Yinghong. A new adaptation method based on adaptability under k-nearest neighbors for case adaptation in case-based design. Expert Systems with Applications, 2012, 39(7): 6485-6502.(SCI影响因子:6.954)
84.Gu Chaochen, Hu Jie, Peng Yinghong. Functional case modelling for knowledge-driven conceptual design. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2012, 226(4): 757-771.(SCI影响因子:2.610)
85.Li Sheng, Hu Jie, Chai Xinyu, Peng Yinghong. Image recognition with a limited number of pixels for visual prostheses design. Artificial organs, 2012, 36(3): 266-274.(SCI影响因子:3.094)
86.Zhan Zhenfei, Hu Jie, Fu Yan, Yang Ren-Jye, Peng Yinghong, Qi Jin. Multivariate error assessment of response time histories method for dynamic systems. Journal of Zhejiang University SCIENCE A, 2012, 13(2): 121-131. (SCI影响因子:2.263)
87.Gu Chaochen, Hu Jie, Peng Yinghong, Li Sheng. FCBS model for functional knowledge representation in conceptual design. Journal of Engineering Design, 2012, 23(8): 577-596.(SCI影响因子:2.588)
88.Hu Xiao, Hu Jie, Peng Yinghong, Cao Zaomin. Constrained functional knowledge modelling and clustering to support conceptual design. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2012, 226(5): 1326-1337.(SCI影响因子:1.762)
89.Guo Yuan, Hu Jie, Peng Yinghong. Research on CBR system based on data mining. Applied Soft Computing, 2011, 11(8): 5006-5014.(SCI影响因子:6.725)
90.Qi Jin*, Hu Jie, Peng Yinghong, Ren Qiushi. Electrical evoked potentials prediction model in visual prostheses based on support vector regression with multiple weights. Applied Soft Computing, 2011, 11(8): 5230-5242.(SCI影响因子:6.725)
91.Hu Jie, Peng Yinghong. Development of a function oriented computer aided tolerancing (FOCAT) system. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2011, 225(7): 1189-1203.(SCI影响因子:2.61)
92.Qi Jin, Hu Jie, Peng Yinghong, Ren Qiushi, Wang Weiming, Zhan Zhenfei. Integration of similarity measurement and dynamic SVM for electrically evoked potentials prediction in visual prostheses research. Expert Systems with Applications, 2011, 38(5): 5044-5060.(SCI影响因子:6.954)
93.Hu Xiao, Hu Jie, Sekhari Aicha, Peng Yinghong, Cao Zaomin. A fuzzy knowledge fusion framework for terms conflict resolution in concurrent engineering. Concurrent engineering, 2011, 19(1): 71-84.(SCI影响因子:1.038)
94.Qi Jin, Hu Jie, Peng Yinghong, Wang Weiming, Zhan Zhenfei. AGFSM: An new FSM based on adapted Gaussian membership in case retrieval model for customer-driven design. Expert Systems with Applications, 2011, 38(1): 894-905.(SCI影响因子:6.954)
95.Li Sheng, Hu Jie, Peng Yinghong. Representation of functional micro-knowledge cell (FMKC) for conceptual design. Engineering Applications of Artificial Intelligence, 2010, 23(4): 569-585.(SCI影响因子:6.212)
96.Qi Jin, Hu Jie, Peng Yinghong, Wang Weiming, Zhang Zhenfei. A case retrieval method combined with similarity measurement and multi-criteria decision making for concurrent design. Expert Systems with Applications, 2009, 36(7): 10357-10366.(SCI影响因子:6.954)
97.Wang Weiming, Peng Yinghong, Hu Jie, Cao Zaomin. Collaborative robust optimization under uncertainty based on generalized dynamic constraints network. Structural and multidisciplinary optimization, 2009, 38(2): 159-170.(SCI影响因子:4.542)
98.Hu Jie, Peng Yinghong, Xiong Guangleng. Multi-disciplinary robust coordination for algebraic and differential constraints and its application to parameter design of bogies. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2008, 222(11): 2147-2161.(SCI影响因子:1.762)
99.Hu Jie, Peng Yinghong, Li Dayong, Yin Jilong. Robust optimization based on knowledge discovery from metal forming simulation. Journal of materials processing technology, 2007, 187: 698-701.(SCI影响因子:5.551)
100.Hu Jie, Peng Yinghong, Xiong Guangleng. Parameter coordination and optimization for collaborative design based on the constraints network. The International Journal of Advanced Manufacturing Technology, 2007, 32(11): 1053-1063.(SCI影响因子:3.226)
101.Hu Jie, Peng Yinghong. Tolerance modelling and robust design for concurrent engineering. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2007, 221(4): 455-465.(SCI影响因子:1.762)
102.Hu Jie, Peng Yinghong, Xiong Guangleng. Knowledge network driven coordination and robust optimization to support concurrent and collaborative parameter design. Concurrent Engineering, 2007, 15(1): 43-52.(SCI影响因子:1.038)
103.Wang Weiming, Hu Jie, Yin Jilong, Peng Yinghong. A knowledge-based parameter consistency management system for concurrent and collaborative design. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 2007, 221(1): 97-107.(SCI影响因子:2.610)
104.Hu Jie, Xiong Guangleng. Dimensional and geometric tolerance design based on constraints. The International Journal of Advanced Manufacturing Technology, 2005, 26(9-10): 1099-1108.(SCI影响因子:3.226)
105.Wang Weiming, Li Dayong, Hu Jie, Peng Yinghong, Zhang Yishun, Li Deyuan. Numerical simulation of fluid flow and heat transfer in a plasma spray gun. The International Journal of Advanced Manufacturing Technology, 2005, 26(5-6): 537-543.(SCI影响因子:3.226)
106.Hu Jie, Xiong Guangleng. Concurrent design of a geometric parameter and tolerance for assembly and cost. International Journal of Production Research, 2005, 43(2): 267-293.(SCI影响因子:8.568)
107.Hu Jie, Xiong Guangleng, Wu Zhaotong. A variational geometric constraints network for a tolerance types specification. The International Journal of Advanced Manufacturing Technology, 2004, 24(3): 214-222.(SCI影响因子:3.226)
科研项目(以项目负责人主持的代表性项目)
1.国家社科基金重大招标项目, 17ZDA020, 设计形态学研究, 2017-10至2022-09, 60万元, 在研, 主持, 首席专家
2.国家重点研发计划项目, SQ2022YFB3400015, 性能驱动的高端装备稳健性设计理论与方法, 2023-01至2025-12, 600万元, 在研, 主持
3.国家自然科学基金重点项目, 52035007, 多学科知识激励的复杂成形装备正向创新设计理论与方法研究, 2021-01至2025-12, 300万,在研, 主持
4.国家自然科学基金面上项目, 52475270, 基于数字孪生模型的不确定环境下高端装备稳健设计研究, 2025-01至2028-12, 48万元,在研, 主持
5.国家自然科学基金面上项目, 51775332, 需求与知识耦合驱动的创新设计理论与方法研究, 2018-01至2021-12, 60万元, 已结题, 主持
6.国家自然科学基金面上项目, 51475288, 生物领域知识激励的创新设计理论与方法研究, 2015-01至2018-12, 80万元, 已结题, 主持
7.国家自然科学基金面上项目, 51075262, 广义知识融合与协同创新设计的双向驱动理论研究, 2011-01至2013-12, 34万元, 已结题, 主持
8.国家自然科学基金面上项目, 50775140, 领域知识驱动的参数与公差集成设计理论与方法研究, 2008-01至2010-12, 26万元, 已结题, 主持
9.国家自然科学基金面上项目, 50575142, 网络环境下的多学科协同设计理论与方法研究, 2006-01至2008-12, 21万元, 已结题, 主持
10.国家自然科学基金青年基金, 60304015, 复杂产品并行协同建模与设计的广义鲁棒性研究, 2004-01至2006-12, 24万元, 已结题, 主持
11.国家973计划项目课题, 2011CB707503, 视觉假体的信息处理及编码理论研究, 2011-01至2015-12, 472万元, 已结题 (被评为优), 主持
12.国家863计划项目, 2008AA04Z113, 动态知识融合的多学科协同创新设计方法与技术, 2008-10至2010-09, 75万元, 已结题, 主持
13.国家科技部创新方法工作专项项目, 2018IM020100, 支持融合创新的创新方法新工具开发与应用示范, 2018-01至2019-12, 90万元, 已结题, 主持
14.国家重大科学仪器设备开发专项课题, 2016YFF0101602, 高分辨共轭激光显微断层成像仪工程化及应用开发, 2016-07至2019-06, 435万元, 已结题, 主持
15.国家重大科学仪器设备开发专项课题, 2013YQ03065105, 多维高分辨率生物组织表征与分析仪器精密机电设计与智能图像处理关键技术研究, 2013-10至2017-12, 810万元, 已结题, 主持
16.上海市优秀技术带头人计划, 16XD1425000, 创新设计的认知学研究, 2016-01至2018-12, 40万元, 已结题, 主持
17.江苏省“双创”人才计划(企业创新类), 苏人才办[2015]26号, 融合创新设计方法在创新创业中的应用示范, 2015-08至2018-08, 50万元, 已结题, 主持
18.上海市曙光学者人才计划, 12SG14, 生物激励设计中的功能知识建模与创新类推研究, 2013-01至2014-12, 15万元, 已结题, 主持
19.上海市科委白玉兰科技人才计划, 11BA1405300, 虚拟样机环境下层次化模型验证理论与方法研究, 2011.6至2012.5, 5万元, 已结题, 主持
20.国家教育部新世纪优秀人才支持计划, NCET-08-0361, 知识驱动的复杂机电产品创新设计中的关键技术研究, 2009-01至2010-12, 50万元, 已结题, 主持
21.上海市经信委高端智能装备首台突破和示范应用专项, ZB-ZBST-01-17-1172, 小动物多模态分子影像设备首台突破, 2016-10至2019-12, 600万元, 已结题, 主持
22.上海市科委科技创新行动计划项目, 16441906000, 超景深三维高动态医学显微成像仪工程化样机研制, 2016-01至2017-12, 42万元, 已结题, 主持
23.上海市科委科技创新行动计划项目, 1542200802, 高精度宽视野成像光谱仪研发中关键技术研究, 2015-01至2016-12, 50万元, 已结题, 主持
24.上海市科委科技创新行动计划项目,14142200702,多光谱显微成像流式分析仪关键技术研究,2014-01至2015-12, 75万元, 已结题, 主持
25.上海市科委科技创新行动计划项目, 13111102800, 集成电路制造装备的光机电协同建模与智能化设计平台研究, 2013-01至2014-12, 140万元, 已结题, 主持
26.上海市科委基础研究重点项目(连续支持), 11JC1406100, 知识融合型制造企业的创新设计方法与关键技术研究, 2011-10至2014-09, 30万元, 已结题, 主持
27.上海市科委科技创新行动计划项目, 09DZ1121400, 集成电路(IC)装备整机知识管理及协同开发平台, 2009-01至2010-12, 50万元, 已结题, 主持
28.上海市科委基础研究重点项目, 08JC1412000, 面向复杂产品创新设计的知识融合理论与应用研究, 2008-10至2010-09, 45万元, 已结题, 主持
29.上海市科教兴市重大产业科技攻关子项目,“海域MB”自主车型整车开发—数字化整车开发技术管理系统开发, 2006-08至2008-12, 393万元, 已结题, 主持
30.上海市自然科学基金, 04ZR14081, 复杂产品多学科并行协同设计与信息集成研究, 2004-12至2007-11, 5万元, 已结题, 主持
31.美国FORD公司URP(University Research Proposal)项目, Combining qualitative and quantitative methods for assessing CAE model quality, 2011-01至2012-10, 9万美金, 已结题, 主持
32.国际合作项目, 055107048, 网络环境下的多领域建模与知识集成系统研究, 2005-12至2007-03, 15万元, 已结题, 主持