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高鸣源(硕导)
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    高鸣源,副教授,博士,IEEE Transactions on Intelligent Transportation Systems副主编,澳洲国立大学(ANU)博士后。曾任德国西门子公司(Siemens AG)高级工程师。2011年于日本东京大学(University of Tokyo)访学。国家自然科学基金项目负责人,并作为主研人员参与了国家高技术研究发展计划(863)项目基于MEMS技术的胶囊内窥镜研究等多项课题的研究。已在Energy Environmental Science, Nano Energy, Applied Energy, Energy Conversion and Management, Energy, IEEE Trans. Intelligent Transportation Systems, IEEE/ASME Trans. Mechatronics, Structural Health Monitoring, IEEE Trans. Biomedical Engineering, 铁道学报、机械工程学报、振动工程学报、农业工程学报等国内外权威期刊以第一作者或通信作者发表SCIEI收录论文40余篇,被引1400余次,授权国家专利20余项。应邀担任IEEE Trans. Intelligent Transportation Systems, Structural Health Monitoring, Applied Energy, Microsystems & Nanoengineering, Energy Conversion and Management等多个期刊审稿人。

一、 主要研究领域及方向

1. 能量收集与利用(振动能量、热电能量、光电能量与射频能量的俘获与利用)

2. 非线性科学(轮轨非线性随机振动、非线性系统的混沌和分岔、非线性现象实验研究);

3. 柔性传感与监测(柔性电子、智能轨道交通系统、结构健康监测、无源无线传感)。

二、 社会工作

IEEE Transactions on Intelligent Transportation Systems副主编,重庆市工业绿色发展专家,机械工程学会高级会员,振动工程学会会员,IEEE Member, IEEE Trans. Intelligent Transportation Systems, Structural Health Monitoring, Applied Energy, Microsystems & Nanoengineering, Energy Conversion and Management等多个期刊审稿人。

三、 近年科研项目及获奖情况

1. 国家自然科学基金,52008343,极端温差区无砟轨道结构变形无源热电监测评估方法研究,2021/01-2023/12,主持

2. 重庆市自然科学基金面上项目,cstc2021jcyj-msxmX1128,猪只智能监测可穿戴设备的射频自供电技术研究,2021/10-2023/09,主持

3. 中央高校基本科研业务费能力提升项目,SWU-KT22020,基于MXene的透明可穿戴5G天线设计与制备方法2022/04-2024/12,主持

4. 航空工业气动院科技创新重点实验室“新风向”联合创新项目,面向涡桨飞机的多层复合超材料低频弹性板波隔声机理与设计方法,2022/06-2024/06,主持

5. 2022年留创计划创新类项目,主持

6. 2020 IACT科技创新奖

7. 2019年第十三届全国振动理论及应用学术会议优秀论文奖

8. 北京理工大学项目,F2020037,旋转式磁流变执行器在动态热环境下的非线性振动特性测试,2020/01-2021/12,主持

9. 西南大学博士启动基金,SWU119016,基于磁悬浮换能器的车辆-轨道振动能量回收机理及应用技术,2018/01-2020/12,主持

10. 日本东京大学GCOE项目,100300000366,基于静电驻极体的微振动发电技术, 2010/10-2011/05,主持

11. 华中科技大学研究生创新基金项目,HF0601108100,磁导式胶囊内窥镜主动控制平台的研制,2009/06-2011/06,主持

12. 国家高技术研究发展计划课题(863)项目,2008AA04Z313,基于MEMS技术的胶囊内窥镜研究,2008/06-2011/12,参与

13. 2010年通用电气基金会科技创新奖一等奖(全国前五)

14. 2009年通用电气基金会科技创新奖一等奖(全国前五)

四、 近年科研代表论文

1. Gao M, Wang P, Jiang L, Wang B, Yao Y, Liu S, Chu D, Cheng W, Lu Y. Power generation for wearable systems. Energy & Environmental Science. 2021;14(4):2114-57. (IF: 38.532, 中科院大类一区Top)

2. Gao M, Yao Y, Wang Y, Wang B, Wang P, Wang Y, Dai J, Liu S, Torres JF, Cheng W, Lu Y. Wearable power management system enables uninterrupted battery-free data-intensive sensing and transmission. Nano Energy. 2023 Mar 1;107:108107. (IF: 17.88, 中科院大类一区Top)

3. Dai J, Feng C, Xie J, Gao M, Zhen T. Design and Control of an Analog Optical Switch Based on the Coupling of an Electrothermal Actuator and a Mass–Spring System. IEEE/ASME Transactions on Mechatronics. 2023 Feb 10. (中科院大类一区Top)

4. Cong J, Yan X, Chen R, Gao M, An B, Tang H, Wang Y, Wang P. Profile evaluation of rail joint in a 3m wavelength based on unsupervised learning. ComputerAided Civil and Infrastructure Engineering. 2022 Nov 20. (IF: 10.5, 中科院大类一区Top)

5. Wang Y, Wang P, Li S, Gao M(通讯作者), Ouyang H, He Q, Wang P. An electromagnetic vibration energy harvester using a magnet-array-based vibration-to-rotation conversion mechanism. Energy Conversion and Management. 2022 Feb 1;253:115146. (IF: 11.53, 中科院大类一区Top)

6. Wang Y, Li S, Gao M(通讯作者), Ouyang H, He Q, Wang P. Analysis, design and testing of a rolling magnet harvester with diametrical magnetization for train vibration. Applied Energy. 2021 Oct 15;300:117373. (IF: 11.45, 中科院大类一区Top)

7. Li D, Hu M, Wu F, Liu K, Gao M, Ju Z, Zhao J, Bao A. Design of tunable low-frequency acoustic energy harvesting barrier for subway tunnel based on an optimized Helmholtz resonator and a PZT circular plate. Energy Reports. 2022 Nov 1;8:8108-23.

8. Deng L, An B, Lu Z, Sun Y, Wang P, Gao M(通讯作者). Wireless Monitoring of Ballastless Track Slab Deformation for High-Speed Railway. IEEE Transactions on Instrumentation and Measurement. 2022 Oct 13;71:1-10.

9. Wang P, Gao M, Sun Y, Zhang H, Liao Y, Xie S. A vibration-powered self-contained node by profiling mechanism and its application in cleaner agricultural production. Journal of Cleaner Production. 2022 Sep 15;366:132897. (IF: 9.297, 中科院大类一区Top)

10. Wang Y, Li S, Wang P, Gao M, Ouyang H, He Q, Wang P. A multifunctional electromagnetic device for vibration energy harvesting and rail corrugation sensing. Smart Materials and Structures. 2021 Nov 2;30(12):125012.

11. Wu F, Zhang X, Ju Z, Zhao J, Hu M, Gao M, Luo J, Pu H. Ultra-broadband sound absorbing materials based on periodic gradient impedance matching. Acoustic and Mechanical Metamaterials for Various Applications. 2022 Jun 3.

12. Li S, Wang Y, Yang M, Sun Y, Wu F, Dai J, Wang P, Gao M(通讯作者). Investigation on a broadband magnetic levitation energy harvester for railway scenarios. Journal of intelligent material systems and structures. 2022 Mar;33(5):653-68.

13. Liu Y, Zhang Y, Tang B, Gao M, Dai J. Introducing the thermal field into multi-physics coupling for the modeling of MR fluid-based micro-brake. International Journal of Heat and Mass Transfer. 2021 Dec 1;180:121785.

14. Dai J, Bu Y, Xie J, Li K, Xiong Z, Tang B, Tao Q, Gao M. Design and Fabrication of a Metal-Silicon Actuator With Low Voltage, Low Power Consumption and Large Displacement. Journal of Microelectromechanical Systems. 2021 May 27;30(4):622-31.

15. Gao Y, Gao M, Lu Y. Two-dimensional multiferroics. Nanoscale. 2021;13(46):19324-40.

16. 孙玉华, 王平, 徐井芒, 王源, 王佩根, 高鸣源(通讯作者). 钢轨波磨自感知原位检测系统试验研究. 机械工程学报, 2021, 57(18): 107-117.

17. Sun Y, Wang P, Lu J, Gao M(通讯作者), et al. Rail corrugation inspection by a self-contained triple-repellent electromagnetic energy harvesting system. Applied Energy, 2021, 286: 116512. (IF: 11.45, 中科院大类一区Top)

18. 高鸣源, 李守太, 孙玉华, 吴飞, 代俊, 王平. 多稳态电磁俘能系统的非线性动力学实验研究. 振动工程学报, 2021.

19. 李守太, 李云伍, 张丽, 石志鸣, 孙玉华, 谢守勇, 杨明金, 高鸣源(通讯作者). 面向农业机械的惯性摆式俘能器特性研究与试验验证. 农业工程学报, 2022, 38(8).

20. 孙玉华, 李守太, 谢守勇, 李云伍, 高鸣源(通讯作者). 不同激励下宽频磁浮俘能器俘能试验. 农业工程学报, 2020, 36(18):81-89.

21. Gao M, Cong J, Wang P, et al. Dynamic modeling and experimental investigation of self-powered sensor nodes for freight rail transport. Applied Energy, 2020, 257: 113969. (IF: 11.45, 中科院大类一区Top)

22. Gao M, Wang Y, Wang P, et al. Modeling and experimental verification of a fractional damping quad-stable energy harvesting system for use in wireless sensor networks. Energy, 2020: 116301. (中科院大类一区Top)

23. Gao M, Wang Y, Wang P, et al. Experimental investigation of non-linear multi-stable electromagnetic-induction energy harvesting mechanism by magnetic levitation oscillation. Applied Energy, 2018, 220: 856-875. (IF: 11.45, 中科院大类一区Top)

24. Gao M, Wang, P, Wang, Y, et al. Self-powered ZigBee wireless sensor nodes for railway condition monitoring. IEEE Transactions on Intelligent Transportation Systems, 2017, 19(3), 900-909. (IF: 9.551, 中科院大类一区Top)

25. Gao M, Wang P, Cao Y, et al. Design and verification of a rail-borne energy harvester for powering wireless sensor networks in the railway industry. IEEE Transactions on Intelligent Transportation Systems, 2016, 18(6): 1596-1609. (IF: 9.551, 中科院大类一区Top)

26. Gao M, Su CG, Wang P, et al. Harvesting thermoelectric energy from railway track. Energy, 2019, 180: 315-329. (中科院大类一区Top)

27. Lu J, Gao M(通讯作者), Wang P, et al. Health monitoring of urban rail corrugation by wireless rechargeable sensor nodes. Structural Health Monitoring, 2019, 18(3): 838-852. (中科院大类二区Top)

28. Gao M, Li Y, Lu J, et al. Condition monitoring of urban rail transit by local energy harvesting. International Journal of Distributed Sensor Networks, 2018, 14(11): 1550147718814469.

29. Gao M, Hu CZ, Chen ZZ, et al. Design and fabrication of a magnetic propulsion system for self-propelled capsule endoscope. IEEE Transactions on Biomedical Engineering, 2010, 57(12): 2891-2902.

30. Gao M, Hu CZ, Chen ZZ, et al. Finite-Difference Modeling of Micromachine for Use in Gastrointestinal Endoscopy. IEEE Transactions on Biomedical Engineering, 2009, 56(10):2413-2419.

五、 教改课题与代表性论文

1. 重庆市研究生教育教学改革研究项目, 农业工程专业“人工智能+”学科群建设实践,2021/07-2023/06.

六、 教学与获奖情况(包括教学获奖及指导学生获奖情况,分类表述)

主要承担《控制工程基础》《文献检索与科技论文写作》等本科教学工作。

指导本科生获得2022届本科优秀毕业论文(设计)一等奖。

七、 获批(授权)的发明专利

1. 高鸣源, 姚冶, 一种多层嵌构天线及其能量收集电路, 2021-11-12, ZL202121161442.6

2. 高鸣源, 姚冶, 一种分体式无框架可穿戴自供电装置, 2021-10-08, 202110725449.4

3. 高鸣源, 佘丰客, 孙博远, 李学康, 任占波, 嵌入式工业电脑, 2021-09-17, ZL201710132073.X

4. 王平, 高鸣源, 陈嵘, 肖杰灵, 电磁振动发电设备, 2019-09-24, ZL201610136267.2

5. 王平, 高鸣源, 赵才友, 盛曦, 列车风风能发电装置及系统, 2018-11-02, ZL201610764366.5

6. 王平, 高鸣源, 肖杰, 陈嵘, 一种轨载式压电梁振动发电装置, 2019-02-12, ZL201610218883.2

7. 刘丹, 苏成光, 高鸣源, 王平, 基于磁致伸缩材料的智能发电轨道板, 2022-03-04, ZL201911221176.9

8. 苏成光, 高鸣源, 王平, 杨帆, 利用轨道结构温度差的热电发电装置, 2020-04-03, ZL201921063876.5

9. 刘胜, 高鸣源, 陈振知, 胡程志, 张鸿海, 用于胶囊内窥镜检测的磁导航式运动控制系统, 2011-04-20, ZL200910273088.3

10. 刘胜,高鸣源,胡程志,吴一明, 一种加工硅通孔互连结构的工艺方法, 2010-10-13, ZL200910060750.7 (2010年度百件优秀中国专利)

11. 刘胜,高鸣源,胡程志,吴一明,一种硅通孔互连结构的制备方法, 2010-08-04, ZL200910060749.4

12. 高鸣源, 吴军强, 陈长森, 工业用HMI设备的壳体、工业用HMI设备, 2016-04-06, ZL201520883567

13. 高鸣源, 黄荻绯, 李学康, 嵌入式工业电脑, 2017-10-20, ZL201730073402.9

14. 高鸣源, 李学康, 黄荻绯, 兰廷礼, 工业计算机机箱, 2018-07-17, ZL 201830015300.6

15. 亚历山大·约菲, 高鸣源, 李学康, 吴军强, 振动隔离装置, 2015-04-29, ZL201420597214

16. 高鸣源, 陈长森, 吴军强, 触摸屏, 2016-01-20, ZL201530329818.3

八、 联系地址、电话/传真、邮箱

热诚欢迎对柔性电子、能量俘获、轨道交通智能传感与监测感兴趣,有志于从事能量、传感、非线性系统智能结构机电一体化设计、动力学分析、多物理场仿真、软硬件平台开发和创新集成的本科生研究生加入我们研究团队。团队注重对个人研究兴趣的挖掘、机电一体化设计、多物理场仿真分析、柔性电子器件制作和实践能力的培养及系统创新,提供工业界实践机会,向高新技术企业和高等学校输送优秀人才。

联系地址:重庆市北碚区西南大学工程技术学院,400716

Email: gaomingyuan@swu.edu.cn