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彭玉鑫,男,分别于2007年和2010年获重庆大学机械电子工程专业本科、硕士学位,2013年获日本東北大学纳米机械工学博士学位,2014年至2016年在新加坡国立大学先进机器人中心任Research Fellow,2013年1月在澳大利亚阿德莱德大学作为访问学者从事精密仪器研究。2016年任浙江大学研究员、博士生导师,浙江大学“百人计划”引进人才。2018年入选浙江省“钱江人才”。研究成果在运动检测、精密仪器、仿生科技、医疗器械、人体康复等领域有重要应用价值。曾获日本学术振兴会(JSPS)“組織的な若手研究者等海外派遣プログラム”基金资助、日本東北大学国际高等研究教育机构基金资助,主持或参与日本JSPS基金项目、新加坡国防科技研究院(DSO)基金项目、新加坡淡马锡实验室(Temasek Laboratory)基金项目、“科技奥运”国家重点专项、军委科技委创新特区项目、教育部人文社科基金项目及浙江省自然科学基金项目等。在Science子刊《Science Advances》等国际知名期刊发表SCI论文40余篇,已申请专利20余项、已授权专利10项。 研究生培养及招生: 实验室现招收推免、考研的硕士生,以及“申请-审核”制的博士生。研究方向:智能传感器、柔性电子技术、穿戴式设备、机器学习、嵌入式系统、人机工效学、运动生物力学等,及其在人体运动检测、健康、医学等方面上的应用。要求申请人为理工科专业或研究背景出身、积极进取、品学兼优、对跨学科研究领域有浓厚兴趣、具有合作精神,欢迎具有电气电子、自动控制、计算机、机械电子、生物医学工程、力学、运动人体科学等相关领域的学习或研究背景的同学加入。有意者请将个人简历发至邮箱 博士后招聘: 申请条件:具有电气电子、自动控制、计算机、机械电子、生物医学工程、力学等相关领域的学习或研究背景,以第一作者(或导师一作、学生二作)发表过SCI论文至少2篇。研究方向:智能传感器、柔性电子技术、穿戴式设备、机器学习、嵌入式系统等。 薪酬待遇:薪酬面议,福利待遇按浙江大学博士后相关规定执行;在站期满3年及以上的人事关系转入浙江大学的博士后符合条件可申报学校高级专业技术职务,择优留校;提供价格优惠的教师公寓等。 具体信息可参考浙大官方网站:https://hr.zju.edu.cn/postdoctor/2019/0514/c29115a1321329/page.htm 教学课程 本科生课程: 《计算机基础》、《运动生物力学》 硕士研究生课程: 《运动生物力学研究进展》 博士研究生课程: 《高级运动生物力学》 专利成果 [1]彭玉鑫,王健翔,刘文明,孟濬,王健。“一种基于生理特征的手势识别柔性传感器”。 [2]彭玉鑫,王健翔,刘文明。“一种基于形状记忆合金的夹持机构”。申请号:202022657821.6,实用新型,申请日期:2020-11-17。 [3]彭玉鑫,宋宪,刘文明。“一种高精度长行程的双物体线性驱动器”。申请号:202021599273.X,授权公开(公告)号:CN212305174U,实用新型,申请日期:2020-08-05。授权日期:2021-01-05。发明,申请号:202010775675.9,申请日期:2020-08-05。 [4]蔡燕琳,彭玉鑫。“基于触觉传感器的智能抓取柔性机械手”。申请号:202021076490.0,实用新型,申请日期:2020-06-12。 [5]彭玉鑫,仲亮,杨毅,汪晓阳。“一种Y型二维力传感器”。申请号:202020965813.5,实用新型,申请日期:2020-06-01。 [6]彭玉鑫,宋宪。“一种基于中性层基底的柔性可延展弯曲传感器”。申请号:202020793768.X,授权公开(公告)号:CN212151614U,实用新型,申请日期:2020-05-14,授权日期:2020-12-15。 [7]彭玉鑫,宋宪,王健翔,蔡燕琳,杜文祥。“一种柔性阵列式电容压力传感器”。申请号:202020365959.6,授权公开(公告)号:CN211576422U,实用新型,申请日期:2020-03-21,授权日期:2020-09-25。 [8]彭玉鑫,蔡燕琳,杜文祥。“一种内置式实心摆线电动关节”。申请号:202010123730.6,发明,申请日期:2020-02-27。 [9]彭玉鑫,杜文祥,蔡燕琳。“一种高精度内藏式实心摆线电动关节”。申请号:202020218974.8,实用新型,申请日期:2020-02-27。 [10]杜文祥,彭玉鑫,蔡燕琳。“一种摆线减速机内置中空电机的集成式电动关节”。申请号:202010123562.0,发明,申请日期:2020-02-27。 [11]蔡燕琳,彭玉鑫,杜文祥。“一种高精度内藏式中空型摆线电动关节”。申请号:202020218642.X,实用新型,申请日期:2020-02-27。 [12]蔡燕琳,杜文祥,彭玉鑫。“一种采用轴承套均压的机械臂关节及机械臂”。申请号:202020218677.3,实用新型,申请日期:2020-02-27。 [13]杜文祥,蔡燕琳,彭玉鑫。“一种中空摆线减速机及电动关节”。申请号:202020218972.9,实用新型,申请日期:2020-02-27。 [14]冯雪,祁一洲,叶柳顺,陈颖,宋宪,彭玉鑫。“柔性石墨烯关节传感器及其制备方法”。申请号:202010036552.3,授权公开(公告)号:CN111232914A,实用新型,申请日期:2020-01-14,公开日期:2020-06-05。 [15]彭玉鑫,仲亮,宋宪,王健翔。“一种可拉伸柔性贴附式手部精细动作捕捉装置”。申请号:201922232221.2,授权公告号:CN210776590U,实用新型,申请日期:2019-12-13,授权日期:2020-06-16。 [16]彭玉鑫,胡炳城,仲亮,杨毅。“一种贴附式手部动作捕捉系统”。申请号:201922231692.1,授权公告号:CN210776589U,实用新型,申请日期:2019-12-13,授权日期:2020-06-16。 [17]彭玉鑫,王健翔,仲亮,宋宪,杨毅。“一种多自由度气动柔性机械手”。申请号:201911148014.7,发明,申请日期:2019-11-21。 [18]彭玉鑫,宋宪,王健翔,仲亮。“一种主动施压的小型柔性脉诊仪及其检测方法”。申请号:201911095121.8,发明,申请日期:2019-11-11。 [19]彭玉鑫。“一种可穿戴足底阵列式三维测力系统”。申请号:201820075507.7,授权公开(公告)号:CN208096194U,实用新型,申请日期:2018-01-17,授权日期:2018-11-16。发明,申请号:201810043855.0,申请日期:2018-01-17。 [20]王时龙,张明明,周杰,康玲,雷松,彭玉鑫,李小勇。“小型多股簧数控加工机床”。申请号:201010219024.8,授权公开(公告)号:CN101898222A,发明,公开日期:2010-12-01,授权日期:2012-02-15。 [21]王时龙,周杰,康玲,彭玉鑫,程建宏,邹政。“多股簧数控机床钢丝张力控制器”。申请号:200910104596.9,授权公开(公告)号:CN101633026,发明,公开日期:2010-01-27,授权日期:2011-08-31。 [22]王时龙,周杰,康玲,程建宏,彭玉鑫,邹政。“多股簧数控加工机床”。申请号:200910104597.3,授权公开(公告)号:CN101633027,发明,公开日期:2010-01-27,授权日期:2011-06-15。 [23]王时龙,周杰,姚威,何云静,李永兵,康玲,彭玉鑫。“导流式电镀滚筒总成”。申请号:200910104024.0,授权公开(公告)号:CN101570880,发明,公开日期:2009-11-04,授权日期:2011-06-15。

研究领域

智能传感技术、柔性电子技术、可穿戴设备 机器学习、模式识别、人体行为识别 微型机器人、康复机器人、仿生机器人、康复器具 智能材料及结构(石墨烯、压电、形状记忆合金、静电、电磁等) 人机工效学、运动生物力学、康复医学

1.智能传感技术、柔性电子技术、可穿戴设备 2.机器学习、模式识别、人体行为识别 3.微型机器人、康复机器人、仿生机器人、康复器具 4.智能材料及结构(石墨烯、压电、形状记忆合金、静电、电磁等) 5.人机工效学、运动生物力学、康复医学

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

A.期刊论文(SCI)(*通讯作者): [1]Kai Pang,Xian Song,Zhen Xu*,Xiaoting Liu,Yingjun Liu*,Liang Zhong,Yuxin Peng*,Jianxiang Wang,Jingzhi Zhou,Fanxu Meng,Jian Wang,Chao Gao*.Hydroplastic foaming of graphene aerogels and artificially intelligent tactile sensors.Science Advances.2020,6(46):eabd4045.(《Science》子刊,IF:13.116) [2]Yuxin Peng,Jingzhi Zhou,Xian Song,Kai Pang,Akram Samy,Zengming Hao,Jian Wang.A flexible pressure sensor with ink printed porous graphene for continuous cardiovascular status monitoring.Sensors.21(2):485,2021. [3]Yuxin Peng,Xian Song,Kai Pang,Qiang Yang,Zhen Xu,Mingming Zhang.A flexible and stretchable bending sensor based on hydrazine-reduced porous graphene for human motion monitoring.IEEE Sensors Journal.2020,20(21):12661-12670. [4]Jianxiang Wang,Yuxi Chen,Yuxin Peng*,Xian Song,Yangkun Zhang,Mingming Zhang.Waveform optimization of a two-axis smooth impact drive mechanism actuator.Journal of Intelligent Material Systems and Structures.2021,32(2):156-168. [5]Xian Song,Hongqiang Wang,Yangkun Zhang,Wenming Liu,Li Liu*,Yuxin Peng*.A miniaturized dual-slider linear actuator using electrostatic adhesion and inertia drive.Actuators.2020,9(4):114. [6]Bingcheng Hu,Tian Ding*,Yuxin Peng*,Li Liu,Xu Wen.Flexible and attachable inertial measurement unit(IMU)-based motion capture instrumentation for the characterization of hand kinematics:a pilot study.Instrumentation Science&Technology.DOI:10.1080/10739149.2020.1789657. [7]Jianxiang Wang,Yuxi Chen,Yuxin Peng*,Yangkun Zhang,Mingming Zhang,Xiaoqing Tian.A linear actuator with an SMA clamping mechanism for dual-slider positioning.Microsystem Technologies.2020,26(12):3885-3891. [8]Xian Song,Yuxin Peng*,Bingcheng Hu,Wenming Liu.Characterization of the fine hand movement in badminton by a smart glove.Instrumentation Science&Technology.2020,48(4):443-458. [9]Peisong Xia,Tian Ding,Yuxin Peng*,Qiang Yang,Jianhua Li.A multi-information data glove for hand function evaluation of stroke patients.Investigacion Clinica.2020,61(1):328-338. [10]Yujie Hou,Yangkun Zhang,Mingming Zhang,Haoyong Yu,Yuxin Peng*.Modeling and experimental verification of a dual-slider piezo-actuated linear motor.Instruments and Experimental Techniques.2019,62(6):876-880. [11]Liang Zhong,Feifei Li,Yuxin Peng*,Qiang Yang,Mingming Zhang,Jian Wang.Design and characterization of a T-shaped two-axis force sensor.Sensor Review.2019,39(6):776-782. [12]Yuxin Peng,Li Liu,Yangkun Zhang,Jie Cao,Yang Cheng,Jian WaSng.A smooth impact drive mechanism actuation method for flapping wing mechanism of bio-inspired micro air vehicles.Microsystem Technologies.2018,24(2):935-941. [13]Yuxin Peng,Huiying Wang,Shu Wang,Jian Wang,Jie Cao,Haoyong Yu.Design and experimental validation of a linear piezoelectric micromotor for dual-slider positioning.Microsystem Technologies.2017,23(7):2363-2370. [14]Yuxin Peng,Jie Cao,Li Liu,Haoyong Yu.A piezo-driven flapping wing mechanism for micro air vehicles.Microsystem Technologies.2017,23(4):967-973. [15]Yuxin Peng,Jie Cao,Zhao Guo,Haoyong Yu.A linear actuator for precision positioning of dual objects.Smart Materials and Structures.2015,24:125039. [16]Yuxin Peng,Yulong Peng,Xiaoyi Gu,Jian Wang,Haoyong Yu.A review of long range piezoelectric motors using frequency leveraged method.Sensors and Actuators A:Physical.2015,235:240-255. [17]Yuxin Peng,So Ito,Yuki Shimizu,Toyohiro Azuma,Wei Gao,Eiji Niwa.A Cr-N thin film displacement sensor for precision positioning of micro stages.Sensors and Actuators A:Physical.2014,211:89-97. [18]Yuxin Peng,So Ito,Yasumasa Sakurai,Yuki Shimizu,Wei Gao.Construction and verification of a linear-rotary micro-stage with a millimeter-scale range.International Journal of Precision Engineering and Manufacturing.2013,14(9):1623-1628. [19]Yuxin Peng,Shilong Wang,Jie Zhou,Song Lei.Structural design,numerical simulation and control system of a machine tool for stranded wire helical springs.Journal of Manufacturing Systems.2012,31:34-41. [20]Zhong Bin,Jinghui Cao,Kaiqi Guo,Andrew McDaid,Yuxin Peng,Qing Miao,ShengQ Xie,Mingming Zhang.Fuzzy logic compliance adaptation for an assist-as-needed controller on the Gait Rehabilitation Exoskeleton(GAREX).Robotics and Autonomous Systems.2020,133:103642. [21]Yangkun Zhang,Yuxin Peng,Yang Cheng,Haoyong Yu.A novel piezo-actuated flapping mechanism based on inertia drive.Journal of Intelligent Material Systems and Structures.2020,31(15):1782-1792. [22]Qing Miao,Yuxin Peng,Li Liu,Andrew McDaid,Mingming Zhang.Subject-specific compliance control of an upper-limb bilateral robotic system.Robotics and Autonomous Systems.2020,126:103478. [23]Qing Miao,Mingming Zhang,Andrew McDaid,Yuxin Peng,Sheng Xie.A robot-assisted bilateral upper limb training strategy with subject-specific workspace:A pilot study.Robotics and Autonomous Systems.2020,124:103334. [24]Yangkun Zhang,Meilin Wang,Yang Cheng,Dongdong Zheng,Yuxin Peng.A stick-slip/inchworm hybrid rotary piezo motor based on a symmetric triangular driving mechanism.Applied Physics Letters.2019,115(13):131904. [25]Mingming Zhang,Andrew McDaid,Allan Joshua Veale,Yuxin Peng,Sheng Quan Xie.Adaptive trajectory tracking control of a parallel ankle rehabilitation robot with joint-space force distribution.IEEE Access.2019,7:85812-85820. [26]Yangkun Zhang,Meilin Wang,Yimin Fan,Tien-Fu Lu,Yang Cheng,Yuxin Peng.Improving load capacity of stick-slip actuators in both driving directions via a shared driving foot.Smart Materials and Structures.2019,28:065004. [27]Yankun Zhang,Yuxin Peng,Zhenxing Sun,Haoyong Yu.A novel stick-slip piezoelectric actuator based on a triangular compliant driving mechanism.IEEE Transactions on Industrial Electronics.2019,66(7):5374-5382. [28]Li Liu,Shu Wang,Guoxin Su,Bin Hu,Yuxin Peng,Qingyu Xiong,Junhao Wen.A framework of mining semantic-based probabilistic event relations for complex activity recognition.Information Sciences.2017,418-419:13-33. [29]Jie Cao,Yang Cheng,Peng Wang,Kaiyu Zhang,Yuqing Xiao,Kun Li,Yuxin Peng,Qun Hao.Autofocusing imaging system based on laser ranging and a retina-like sample.Applied Optics.2017,56(22):6222-6229. [30]Jie Cao,Yang Cheng,Qun Hao,Fanghua Zhang,Kaiyu Zhang,Xiao Li,Kun Li,Yuxin Peng.Improving the performance of time-domain pulsed echo laser profile using tunable lens.Optics Express.2017,25(7):7970-7983. [31]Li Liu,Shu Wang,Yuxin Peng,Zigang Huang,Ming Liu.Mining intricate temporal rules for recognizing complex activities of daily living under uncertainty.Pattern Recognition.2016,60:1015-1028. [32]Jie Cao,Yang Cheng,Peng Wang,Yuxin Peng,Kaiyu Zhang,Leina Wu,Wenze Xia,Haoyong Yu.Method based on bioinspired sample improves autofocusing performances.Optical Engineering.2016,55(10):103103. [33]Jie Cao,Qun Hao,Yang Cheng,Fanghua Zhang,Yuxin Peng,Haoyong Yu.Modelling and simulations on retina-like sensors based on curved surface.Applied Optics.2016,55:5738-5744. [34]Li Liu,Yuxin Peng,Ming Liu,Zigang Huang.Complex activity recognition using time series pattern dictionary learned from ubiquitous sensors.Information Sciences.2016,340-341:41-57. [35]Jie Cao,Qun Hao,Yuxin Peng,Yang Cheng,Jiaxing Mu,Peng Wang,Haoyong Yu.Modeling and simulations of three-dimensional laser imaging based on space-variant structure.Optics and Laser Technology.2016,78:62-70. [36]Jie Cao,Qun Hao,Yang Cheng,Yuxin Peng,Kaiyu Zhang,Jiaxing Mu,Peng Wang.Differential time domain method improves performance of pulsed laser ranging and three-dimensional imaging.Applied Optics.2016,55:360-367. [37]Jie Cao,Qun Hao,Wenze Xia,Yuxin Peng,Yang Cheng.Design and realization of retina-like three-dimensional imaging based on MOEMS mirror.Optics and Lasers in Engineering.2016,82:1-13. [38]Li Liu,Yuxin Peng,Ming Liu,Zigang Huang.Sensor-based human activity recognition system with a multilayered model using time series shapelets.Knowledge-Based Systems.2015,90:138-152. [39]Yangkun Zhang,Tien-Fu Lu,Yuxin Peng.Three-port equivalent circuit of multi-layer piezoelectric stack.Sensors and Actuators A:Physical.2015,236:92-97. [40]Yuki Shimizu,Yuxin Peng,Junji Kaneko,Toyohiro Azuma,So Ito,Wei Gao,Tien-Fu Lu.Design and construction of the motion mechanism of an XY micro-stage for precision positioning.Sensors and Actuators A:Physical.2013,201:395-406. B.期刊论文(EI): [1]Yuxin Peng,Jun Kaneko,Yoshikazu Arai,Yuki Shimizu,Wei Gao,Koichi Okamoto,Miho Chiba,Shuji Aisawa.A linear micro-stage with a long stroke for precision positioning of micro-objects.Nanotechnology and Precision Engineering.2011,9(3):221-227.(EI) [2]Yuxin Peng,Yasumasa Sakurai,Yoshikazu Arai,Yuki Shimizu,Wei Gao.Design of a linear-rotary micro-stage.Proc.of SPIE.2011,8321.832121:1-7.(EI) [3]Yuxin Peng,So Ito,Yuki Shimizu and Wei Gao.A micro-stage for linear-rotary positioning.Key Engineering Materials.2012,523-524:650-655.(EI) [4]Toyohiro Azuma,Eiji Niwa,Yuxin Peng,Junji Kaneko,Yuki Shimizu,So Ito,Wei Gao.Cr-N strain-gauge-type precision displacement sensor for measuring positions of micro stage.Key Engineering Materials.2012,523-524:939-944.(EI) C.会议论文: [1]Yuxin Peng,Yuki Shimizu,Wei Gao.A micro actuator for linear-rotary two-axis positioning.JSPE Tohoku Branch Conference.21 October,2011,Sendai,Japan. [2]Yuxin Peng,Yuki Shimizu,So Ito,Wei Gao.Modeling and analysis of an XY micro-stage for precision positioning.JSPE Tohoku Branch Conference.1 December,2012,Yonezawa,Japan. [3]Yuxin Peng,Yuki Shimizu,So Ito,Wei Gao.Design and experimental validation of an XY micro-stage.The 47th JSME Tohoku Branch Conference.13 March,2012,Sendai,Japan. [4]Yuxin Peng,Toyohiro Azuma,Eiji Niwa,Junji Kaneko,Yuki Shimizu,So Ito and Wei Gao.Development of Cr-N strain-gauge-type displacement sensor for positioning of micro-XY stage.Proc.of 7th LEM21,7 November,2013,Matsushima,Japan. [5]Yuxin Peng,Haoyong Yu.Design and experimental validation of a piezo-driven MAV flapping wing mechanism.11th IEEE International Conference on Nano/Micro Engineered and Molecular Systems(IEEE NEMS),17-20 April,2016,Matsushima Bay and Sendai,Japan. [6]Yuxin Peng,Jie Cao,Li Liu,Jian Wang,Haoyong Yu.Design and optimization of a piezo-actuated flapping wing mechanism for micro air vehicles.ACTUATOR 2016,15th International Conference on New Actuators,13-15 June,2016,Bremen,Germany. [7]金子純史,彭玉鑫,東豊大,高偉,丹羽英二,相澤周二.長ストロークXYマイクロステージに関する研究:マイクロステージの設計と試作.2011年度精密工学会春季大会学術講演会講演論文集,2011,日本,东京. [8]東豊大,彭玉鑫,清水裕樹,伊東聡,高偉,丹羽英二.マイクロステージ用変位センサに関する研究-測定の高分解能化.2012年精密工学会東北支部学術講演会講演論文集,2012.12,日本,米沢市. [9]東豊大,丹羽英二,彭玉鑫,清水裕樹,伊東聡,高偉.マイクロステージ用変位センサに関する研究.日本機械学会東北支部第47期総会・講演会講演論文集,2012.3,日本,仙台市. [10]Li Liu,Zigang Huang,Yuxin Peng,Ming Liu.A hierarchical pachinko allocation model for social sentiment mining.The 8th International Conference on Knowledge Science,Engineering and Management(KSEM 2015).28-30 October,2015,Chongqing,China.(EI) [11]Xiaoyi Gu,Zhao Guo,Yuxin Peng,Haoyong Yu,Gong Chen.Effects of compliant and flexible trunks on peak-power of a lizard-inspired robot.2015 IEEE Conference on Robotics and Biomimetics.6-9 December,2015,Zhuhai,China.(EI) [12]Jie Cao,Yang Cheng,Yuxin Peng,Peng Wang,Jiaxing Mu,Hanglin Cheng,Haoyong Yu.Three-dimensional pulsed laser imaging based on retina-like structure.Asia Communications and Photonics Conference(ACP),19-23 November,2015,Hong Kong.(EI) [13]彭玉鑫.运动人体科学与智能感知技术.中国工业与应用数学学会第十七届年会(CSIAM 2019),19-22 October,2019,Foshan,China. [14]宋宪,王健翔,彭玉鑫.基于时空图卷积网络的人体运动状态识别研究.第十一届全国体育科学大会,1-3 November,2019,Nanjing,China. [15]仲亮,周静芝,彭玉鑫.基于智能数据指环与虚拟现实的手功能康复系统研究.第十一届全国体育科学大会,1-3 November,2019,Nanjing,China. [16]彭玉鑫,宋宪,王健翔.基于双目视觉与卷积神经网络的手功能活动损伤评估.2019中国生物医学工程大会,14-16 November,2019,Jinan,China. [17]Xiangying Zhang,Hongling Ye,Tao Peng,Yuxin Peng,Renzhong Tang,Xingwei Xiang.A smart user authentication approach using sensing seat.IEEE 16th International Conference on Automation Science and Engineering(CASE 2020).20-24 August,2020,Hong Kong. D.中文论文: [1]周静芝,彭玉鑫,郑芳,温煦,王健.智能体育发展研究.浙江体育科学.2020,42(1):25-31. [2]华安珂,冯金升,孟濬,彭玉鑫,王健.站姿稳定性与多感觉整合控制研究进展.航天医学与医学工程.2019,32(2):183-188. [3]夏培淞,李建华,仲亮,陈寅格,彭玉鑫.数据手套在手外伤患者评估中的应用初探.中华物理医学与康复杂志.2018,40(12):919-922. [4]田晓庆,潘玉鹏,张盾,彭玉鑫.G7能源分析及其对高校相关专业的启示.教育教学论坛.2018,43:103-105. [5]王时龙,田志锋,彭玉鑫,周杰,康玲.多股簧数控机床设计及其张力控制系统的研究.制造技术与机床.2010,9:62-65. [6]周杰,邹政,王时龙,程建宏,彭玉鑫.基于多股簧数控加工机床的多通道张力动态监控系统的研发.组合机床与自动化加工技术.2009,12:54-57. [7]周杰,彭玉鑫,王时龙,程建宏,邹政.多股螺旋弹簧数控机床结构设计及控制系统改进.组合机床与自动化加工技术.2009,10:71-78. [8]程建宏,王时龙,周杰,邹政,彭玉鑫.多股簧数控机床张力控制器动态响应特性的研究.2009,6:145-147. [9]王健翔,宋宪,仲亮,彭玉鑫.基于摩擦式冲击驱动原理的压电驱动器运动分析.冶金自动化.2020,44:285-288. [10]宋宪,仲亮,周静芝,彭玉鑫.基于光学动作采集系统的运动疲劳监测.冶金自动化.2020,44:289-291. 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学术兼职

[1]Guest Editor,Advances in Mechanical Engineering.(SCI) [2]Reviewer,IEEE Transactions on Industrial Electronics.(SCI) [3]Reviewer,Sensors and Actuators:A.Physical.(SCI) [4]Reviewer,Review of Scientific Instruments.(SCI) [5]Reviewer,Applied Sciences.(SCI) [6]Reviewer,Microsystem Technologies.(SCI) [7]Reviewer,Chinese Journal of Mechanical Engineering.(SCI) [8]Reviewer,International Journal of Computational Intelligence Systems.(SCI) [9]Reviewer,IEEE/CAA Journal of Automatica Sinica.(EI) [10]Reviewer,The 2nd Australasian Conference on Computational Mechanics(ACCM2015). [11]Reviewer,IEEE International Conference on Advanced Intelligent Mechatronics(AIM 2016).

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