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方鹏

作者:方鹏         日期:2023年03月04日

1.基本情况

方鹏、研究员、博导。

研究方向:人机界面与人机交互。

主持国家重点研发计划变革性技术关键科学问题专项课题、国家自然科学基金青年/面上/区域联合重点项目等。

2.个人主要经历

200009—200407月,中国科学技术大学 学士

200410—200610月,(德国)波茨坦大学 硕士

200610—201010月,(德国)波茨坦大学 博士

研究工作经历:

201012—20122月,深圳市豪恩声学股份有限公司 研究所副所长、高级工程师

20123月至今,中国科学院深圳先进技术研究院 助理研究员/副研究员/研究员、博导

3.主要荣誉奖励

(1)2019年度第九届吴文俊人工智能科学技术奖-技术发明奖三等奖(第一完成人)

(2)2018年中国科学院青年创新促进会会员,2023年中国科学院青年创新促进会优秀会员

(3)2014年广东省杰出青年科学基金获得者

(4)2015年广东省培养高层次人才特殊支持计划科技创新青年拔尖人才

(5)012年深圳市“孔雀计划”海外高层次人才

(6)2016年深圳市高层次专业人才

(7)2016年深圳市南山区领航人才

4.教学工作与研究领域

研究生课程:《传感器技术导论》

5.承担或参与的主要科研及教改项目

(1)国家重点研发计划变革性技术关键科学问题专项,2017YFA********,仿生假肢手感知与控制的神经信息解析和交互技术研究——神经信号编码与假肢手柔顺运动控制,534万元,在研,主持。

(2)国家自然科学基金青年项目,********,基于无声语音及肌电信息融合的多功能假肢控制研究,25万元,结题,主持。

(3)国家自然科学基金面上项目,********,基于柔性传感的假肢手感觉信号检测及感觉神经反馈方法研究,63万元,结题,主持。

(4)国家自然科学基金区域联合重点项目,********,基于柔性传感的假肢手感觉信号检测及感觉神经反馈方法研究,259万元,在研,主持。

6.近期发表的学术论文、教改论文

(1)He Mao, Peng Fang*, Yue Zheng, Lan Tian, Xiangxin Li, Pu Wang, Liang Peng, and Guanglin Li*, “Continuous grip force estimation from surface electromyography using generalized regression neural network”, Technology and Health Care, Pre-press, 2023.

(2)Nian Dai, Iek Man Lei, Zhaoyang Li, Yi Li, Peng Fang*, and Junwen Zhong*, “Recent Advances in Wearable Electromechanical SensorsMoving Towards Machine Learning-Assisted Wearable Sensing Systems”, Nano Energy, 105: 108041, January 2023.

(3)He Mao, Yue Zheng, Chenfei Ma, Kai Wu, Guanglin Li*, and Peng Fang*, “Simultaneous estimation of grip force and wrist angles by surface electromyography and acceleration signals”, Biomedical Signal Processing and Control, 79(1): 104088, January 2023.

(4)Shizhe Lin, Zisheng Xu, Shuting Wang, Jianglang Cao, Junwen Zhong*, Guanglin Li*, and Peng Fang*, “Multiplying the Stable Electrostatic Field of Electret Based on the Heterocharge-Synergy and Superposition Effect”, Advanced Science, 9(32): ********, November 2022.

(5)Yuan Xue#, Shuang Li#, Mi Zhang, Zehai Ruan, Kai Wu, Jianglang Cao, Guanglin Li, Xiaoqing Zhang*, and Peng Fang*, “Air-borne ultrasonic transducers based on cross-linked polypropylene ferro/piezoelectrets”, IEEE Sensors Journal, 22(15): 14806-14814, August 2022.

(6)Anna A. Gulyakova*, Mansur F. Galikhanov, Xingchen Ma, Xiaoqing Zhang, and Peng Fang*, “The Peculiarities of Electret Effect in Corona Electrets Based on Nonpolar and Polar Polymers with Dispersed Montmorillonite”, IEEE Transactions on Dielectrics and Electrical Insulation, 29(3): 840-844, June 2022.

(7)Yingying Wang, Peng Fang*, Xi Tang, Naifu Jiang, Lan Tian, Xiangxin Li, Yue Zheng, Jianping Huang, Oluwarotimi Williams Samuel, Hui Wang, Kai Wu, and Guanglin Li*, “Effective Evaluation of Finger Sensation Evoking by Non-invasive Stimulation for Sensory Function Recovery in Transradial Amputees”, IEEE Transactions on Neural Systems and Rehabilitation Engineering, 30: 519-528, March 2022.

(8)Xiangxin Li, Yue Zheng, Yan Liu, Lan Tian, Peng Fang*, Jianglang Cao, and Guanglin Li*, “A Novel Motion Recognition Method based on Force-Myography of Dynamic Muscle Contractions”, Frontiers in Neuroscience, 15: 783539, January 2022.

(9)Yingying Wang, Lelun Jiang, Lei Ren, Pingao Huang, Mei Yu, Lan Tian, Xiangxin Li, Jun Xie, Peng Fang*, and Guanglin Li*, “Towards Improving the Quality of Electrophysiological Signal Recordings by Using Microneedle Electrode Arrays”, IEEE Transactions on Biomedical Engineering, 68(11): 3327-3335, November 2021.

(10)Peng Fang, Yuhui Peng, Wan-Hua Lin, Yingying Wang, Shuting Wang, Xiaoqing Zhang*, Kai Wu, and Guanglin Li*, “Wrist pulse recording with a wearable piezoresistor-piezoelectret compound sensing system and its applications in health monitoring”, IEEE Sensors Journal, 21(18): 20921-20930, September 2021.

(11)He Mao, Peng Fang*, and Guanglin Li*, “Simultaneous estimation of multi-finger forces by surface electromyography and accelerometry signals”, Biomedical Signal Processing and Control, 70: 103005, August 2021.

(12)Oluwagbenga Paul Idowu, Ademola Enitan Ilesanmi, Xiangxin Li, Oluwarotimi Williams Samuel, Peng Fang*, and Guanglin Li*, “An Integrated Deep Learning Model for Motor Intention Recognition of Multi-Class EEG Signals in Upper Limb Amputees”, Computer Methods and Programs in Biomedicine, 206: 106121, July 2021.

(13)Oluwagbenga Paul Idowu, Oluwaremilekun Adelopo, Ademola Enitan Ilesanmi, Xiangxin Li, Oluwarotimi Williams Samuel, Peng Fang*, and Guanglin Li*, “Neuro-evolutionary Approach for Optimal Selection of EEG Channels in Motor Imagery based BCI Application”, Biomedical Signal Processing and Control, 68: 102621, July 2021.

(14)Oluwagbenga Paul Idowu, Jianping Huang, Yang Zhao, Oluwarotimi William Samuel, Yu Mei, Peng Fang*, and Guanglin Li*, “A stacked sparse auto-encoder and back propagation network model for sensory event detection via a flexible ECoG”, Cognitive Neurodynamics, 14(5): 591-607, June 2020.

(15)Li Chen, Jianglang Cao, Guanglin Li, Peng Fang*, Xiangshan Gong, and Xiaoqing Zhang*, “Property Assessment and Application Exploration for Layered Polytetrafluoroethylene Piezoelectrets”, IEEE Sensors Journal, 19(23): 11262-11271, December 2019.

(16)Peng Fang, Xingchen Ma, Xiangxin Li, Xunlin Qiu, Reimund Gehard, Xiaoqing Zhang*, and Guanglin Li*, “Fabrication, structure characterization, and performance testing of piezoelectret-film sensors for recording body motion”, IEEE Sensors Journal, 18(1): 401-412, January 2018.

(17)Xu Zhang, Xiangxin Li, Oluwarotimi Williams Samuel, Zhen Huang, Peng Fang*, and Guanglin Li*, “Improving the robustness of electromyogram-pattern recognition for prosthetic control by a post-processing strategy”, Frontiers in Neurorobotics, 11: 51, September 2017.

(18)Xingchen Ma, Xiaoqing Zhang*, and Peng Fang*, “Flexible film-transducers based on polypropylene piezoelectrets: Fabrication, properties, and applications in wearable devices”, Sensors and Actuators A-Physical, 256: 35-42, April 2017.

(19)Xiangxin Li, Oluwarotimi Williams Samuel, Xu Zhang, Hui Wang, Peng Fang*, and Guanglin Li*, “A motion-classification strategy based on sEMG-EEG signal combination for upper-limb amputees”, Journal of NeuroEngineering and Rehabilitation, 14(1): 2, January 2017.

(20)Peng Fang*, Yanjuan Geng, Zheng Wei, Ping Zhou, Lan Tian, and Guanglin Li*, “New Control Strategies for Multifunctional Prostheses that Combine Electromyographic and Speech Signals”, IEEE Intelligent Systems, 30(4): 47-53, July-August 2015.

(21)Peng Fang*, Lars Hollaender, Werner Wirges, and Reimund Gerhard, “Piezoelectric d33 coefficients in foamed and layered polymer piezoelectrets from dynamic mechano-electrical experiments, electro-mechanical resonance spectroscopy, and acoustic-transducer measurements”, Measurement Science & Technology, 23(3): 035604, March 2012.

(22)Peng Fang*, Feipeng Wang, Werner Wirges, Reimund Gerhard, and Heitor Cury Basso, “Three-layer piezoelectrets from fluorinated ethylene-propylene (FEP) copolymer films”, Applied Physics A-Materials Science & Processing, 103(2): 455-461, May 2011.

(23)Peng Fang*, Xunlin Qiu, Werner Wirges, Reimund Gerhard, and Larissa Zirkel, “Polyethylene-naphthalate (PEN) ferroelectrets: Cellular structure, piezoelectricity and thermal stability”, IEEE Transactions on Dielectrics and Electrical Insulation, 17(4): 1079-1087, August 2010.

(24)Peng Fang*, Werner Wirges, Michael Wegener, Larissa Zirkel, and Reimund Gerhard, “Cellular polyethylene-naphthalate films for ferroelectret applications: foaming, inflation and stretching, assessment of electromechanically relevant structural features”, e-polymers, article no. 043, March 2008.

(25)Peng Fang*, Michael Wegener, Werner Wirges, Reimund Gerhard, and Larissa Zirkel, “Cellular polyethylene-naphthalate ferroelectrets: Foaming in supercritical carbon dioxide, structural and electrical preparation, and resulting piezoelectricity”, Applied Physics Letters, 90(19): 192908, May 2007.

7.指导学术获奖情况

(1)指导博士研究生获中国科学院大学三好员工荣誉称号

(2)指导博士研究生获2022年度中国科学院经理优秀奖

8.申请发明专利

(1)发明专利:方鹏、朱彪,薄膜型扬声器阵列,专利号:ZL ********6.2,申请日:2011.05.06,授权公告号:CN ******** B,授权公告日:2013.10.09

(2)发明专利:方鹏、朱彪,传声扬声两用薄膜设备及其制作方法,专利号:ZL ********2.0,申请日:2011.05.06,授权公告号:CN ******** B,授权公告日:2014.04.02

(3)发明专利:方鹏、朱彪,薄膜型传声器阵列,专利号:ZL ********4.3,申请日:2011.05.06,授权公告号:CN ******** B,授权公告日:2014.04.16

(4)发明专利:方鹏、匡星、田岚、李光林,智能假手系统,专利号:ZL 2********5.1,申请日:2013.10.22,授权公告号:CN ******** B,授权公告日:2015.12.02

(5)发明专利:方鹏、匡星、田岚、张浩诗、李光林,压电式康复系统以及压电式康复鞋,专利号:ZL ********7.7,申请日:2012.12.10,授权公告号:CN ******** B,授权公告日:2016.01.27

(6)发明专利:匡星、郑悦、田岚、方鹏、李光林,假肢,专利号:ZL ********6.X,申请日:2013.12.11,授权公告号:CN ******** B,授权公告日:2016.04.13

(7)发明专利:方鹏、匡星、田岚、姜永涛、李光林,足底压力分布检测系统及其制作方法,专利号:ZL ********5.X,申请日:2014.09.05,授权公告号:CN ******** B,授权公告日:2017.03.29

(8)发明专利:郑悦、方鹏、匡星、徐睿、田岚、朱明星、李光林,一种假肢接受腔的防脱落系统,专利号:ZL ********7.3,申请日:2014.12.31,授权公告号:CN ******** B,授权公告日:2017.09.26

(9)发明专利:匡星、耿艳娟、郑悦、徐睿、景晓蓓、方鹏、李光林,康复训练手及康复训练方法,专利号:ZL ********4.6,申请日:2015.12.29,授权公告号:CN ******** B,授权公告日:2017.12.01

(10)发明专利:郑悦、徐睿、匡星、景晓蓓、方鹏、李光林,“假肢手”,专利号:ZL ********2.4,申请日:2015.11.04,授权公告号:CN ******** B,授权公告日:2018.09.07

(11)发明专利:郑悦、景晓蓓、田岚、李向新、方鹏、李光林,多种假肢部件及其旋转传动机构、屈伸传动机构,专利号:ZL ********1.9,申请日:2016.12.30,授权公告号:CN ******** B,授权公告日:2019.01.18

(12)发明专利:郑悦、田岚、李向新、景晓蓓、方鹏、李光林,“一种仿生手装置及机器人”,专利号:ZL ********7.3,申请日:2017.12.28,授权公告号:CN ******** B,授权公告日:2020.08.28

(13)发明专利:田岚、李向新、方鹏、李光林,“假肢动作分类器的性能评估方法、装置、终端及存储介质”,专利号:ZL ********3.4,申请日:2017.12.14,授权公告号:CN ******** B,授权公告日:2021.04.02

(14)发明专利:郑悦、李向新、田岚、景晓蓓、方鹏、李光林,“一种仿人手指指节、仿人手指及手掌结构”,专利号:ZL ********7.5,申请日:2019.12.16,授权公告号:CN ******** B,授权公告日:2022.03.18

(15)发明专利:郑悦、李向新、田岚、杨子健、方鹏、李光林,“一种反馈关节”,专利号:ZL ********7.2,申请日:2021.06.07,授权公告号:CN ******** B,授权公告日:2022.05.17

(16)发明专利申请:方鹏、田岚、李向新、李光林,一种信号检测传感结构及其制作方法、信号检测方法,申请号:********8.2,申请日:2017.08.02

(17)发明专利申请:方鹏、张楠鑫、李向新、李光林,一种运动监控系统及其制作方法,申请号:********.8,申请日:2017.08.02

(18)发明专利申请:方鹏、田岚、张浩诗、李光林,集成检测传感器及触摸感应设备,申请号:********3.3,申请日:2017.09.06

(19)发明专利申请:黄品高、方鹏、李光林,“复合传感器、复合传感器的制作方法及复合传感器系统”,申请号:********3.9,申请日:2018.08.24

(20)发明专利申请:方鹏、曹江浪、李光林,“一种传感器及检测触觉信号的方法”,申请号:********2.3,申请日:2018.09.27

(21)发明专利申请:于雷、田岚、方鹏、李光林,“一种传感器和传感器的制备方法”,申请号:********8.7,申请日:2018.12.06

(22)发明专利申请:方鹏、彭雨辉、林宛华、李光林,“一种脉搏检测设备及其制作方法,申请号:********.9,申请日:2019.06.24

(23)发明专利申请:方鹏、曹江浪、田岚、李向新、郑悦、李光林,“一种锁具和锁具的控制方法”,申请号:********6.8,申请日:2019.11.13

(24)发明专利申请:王迎英、方鹏、田岚、李向新、李光林,“腕带式生物信号采集装置及其制作方法”,申请号:********4.1,申请日:2019.11.14

(25)发明专利申请:方鹏、王迎英、李向新、田岚、李光林,“头带式生物信号采集装置及其制备方法”,申请号:********0.3,申请日:2019.11.14

(26)发明专利申请:方鹏、彭雨辉、李向新、田岚、李光林,“温度传感器和温度传感系统”,申请号:********0.9,申请日:2020.02.21

(27)发明专利申请:方鹏、曹江浪、李光林,“一种驻极体的封装方法以及驻极体封装组件”,申请号:********9.2,申请日:2020.07.28

(28)发明专利申请:曹江浪、方鹏、李光林,“一种压电传感器的制备方法与压电传感器”,申请号:********5.0,申请日:2020.09.15

(29)发明专利申请:曹江浪、方鹏、李光林,“一种传感器、电子装置及传感器的制作方法”,申请号:********2.9,申请日:2020.09.15

(30)发明专利申请:李向新、杨子健、田岚、郑悦、方鹏、李光林,“一种基于振动的假肢手力位信息反馈系统及方法”,申请号:********1.5,申请日:2021.06.16

(31)发明专利申请:方鹏、王迎英、汤熙、田岚、李向新、郑悦、张浩诗、李光林,“一种面向手势控制的人机交互方法和系统”,申请号:********9.5,申请日:2021.06.28

(32)发明专利申请:方鹏、曹江浪、李光林,“一种神经套管的制备方法、装置、电子设备及存储介质”,申请号:********0.2,申请日:2021.07.28

(33)发明专利申请:曹江浪、方鹏、李光林,“一种伤口愈合贴剂组合物及其制备方法和应用”,申请号:********6.4,申请日:2021.08.26

(34)发明专利申请:方鹏、曹江浪、李光林,“一种结合触压或拍打透皮给药的压电驻极体给药贴剂及其制备方法和应用”,申请号:********.3,申请日:2021.08.26

(35)发明专利申请:方鹏、曹江浪、李光林,“一种促进细胞贴壁和生长的装置及其使用方法”,申请号:********4.2,申请日:2021.08.27

(36)发明专利申请:方鹏、王迎英、曹江浪、郑悦、李向新、田岚、李光林,“一种用于远程操作的人机交互方法和系统”,申请号:********.5,申请日:2022.05.17

(37)发明专利申请:曹江浪、方鹏、田岚、李光林,“一种增强人与环境互适应性和联动性的康养环境优化方法”,申请号:********.8,申请日:2022.06.01

(38)发明专利申请:方鹏、汤熙、曹江浪、田岚、李向新、郑悦、李光林,“一种以非视听觉获取信息的静默式通信系统”,申请号:********.2,申请日:2022.06.06

(39)发明专利申请:方鹏、曹江浪、李向新、田岚、郑悦、李光林,“一种基于人机交互的沉浸式训练系统”,申请号:********.4,申请日:2022.06.13

(40)发明专利申请:方鹏、曹江浪、田岚、郑悦、李向新、张浩诗、李光林,“一种静默式睡眠唤醒方法、装置及应用”,申请号:********.2,申请日:2022.07.04

(41)发明专利申请:方鹏、曹江浪、李光林,“一种具有温度检测功能的超声系统制作和使用方法”,申请号:********.6,申请日:2022.08.03

9.出版的专著和教材

(1)Oluwarotimi Williams Samuel, Peng Fang, Shixiong Chen, Yanjuan Geng, and Guanglin Li*, Chapter: “Activity Recognition Based on Pattern Recognition of Myoelectric Signals for Rehabilitation”, in Book: “Handbook of Large-Scale Distributed Computing in Smart Healthcare”, eds. Samee U. Khan, Albert Y. Zomaya, and Assad Abbas, Switzerland: Springer, 2017, ISSN 2520-8632 (electronic ISSN 2364-9496), ISBN 978-3-319-58279-5 (eBook 978-3-319-58280-1), 427-442.

(2)Guanglin Li, Oluwarotimi Williams Samuel, Chuang Lin, Mojisola Grace Asogbon, Peng Fang, and Paul Oluwagbengba Idowu, Chapter: “Realizing Efficient EMG-Based Prosthetic Control Strategy”, in Book: “Neural Interface: Frontiers and Applications”, ed. Xiaoxiang Zheng, Springer Nature Singapore Pte Ltd. 2019, ISSN 0065-2598 (electronic ISSN 2214-8019), ISBN 978-981-13-2049-1 (electronic ISBN 978-981-13-2050-7), 149-166.



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