高鳴源

高鳴源,西南大學工程技術學院,副教授,博士,IEEE Member,澳洲國立大學(ANU)博士後。曾任德國西門子公司(Siemens AG)高級工程師。2011年於日本東京大學(University of Tokyo)訪學。國家自然科學基金項目負責人,並作為主研人員參與了國家高技術研究發展計畫(863)項目“基於MEMS技術的膠囊內窺鏡研究”等多項課題的研究。

基本介紹

  • 中文名:高鳴源
  • 國籍:中國
  • 學位/學歷:博士
  • 職業:教師
研究方向,發表論文,

研究方向

1. 能量收集與利用(振動能量、熱電能量、光電能量、風能與RF能量的俘獲與利用);
2. 非線性科學(輪軌非線性隨機振動、非線性系統的混沌和分岔、非線性現象實驗研究);
3. 柔性感測與監測(柔性電子、智慧型軌道交通系統、結構健康監測、無源無線感測)。

發表論文

1. Gao MY, Wang P, Jiang L, et al. Power generation for wearable systems[J]. Energy & Environmental Science, 2021. (IF: 30.289, 中科院大類一區Top)
2. Sun YH, Wang P, Lu J, Gao MY(通訊作者), et al. Rail corrugation inspection by a self-contained triple-repellent electromagnetic energy harvesting system[J]. Applied Energy, 2021, 286: 116512. (IF: 8.848, 中科院大類一區Top)
3. 高鳴源, 李守太, 孫玉華, 吳飛, 代俊, 王平. 多穩態電磁俘能系統的非線性動力學實驗研究[J]. 振動工程學報, 2021.
4. 孫玉華, 李守太, 謝守勇, 李雲伍, 高鳴源(通訊作者). 不同激勵下寬頻磁浮俘能器俘能試驗[J]. 農業工程學報, 2020, 36(18):81-89.
5. Gao MY, Cong JJ, Wang P, et al. Dynamic modeling and experimental investigation of self-powered sensor nodes for freight rail transport[J]. Applied Energy, 2020, 257: 113969. (IF: 8.848, 中科院大類一區Top)
6. Gao MY, 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[J]. Energy, 2020: 116301. (IF: 6.082, 中科院大類二區Top、小類一區)
7. Gao MY, Wang Y, Wang P, et al. Experimental investigation of non-linear multi-stable electromagnetic-induction energy harvesting mechanism by magnetic levitation oscillation[J]. Applied Energy, 2018, 220: 856-875. (IF: 8.848, 中科院大類一區Top)
8. Gao, MY, Wang, P, Wang, YF, et al. Self-powered ZigBee wireless sensor nodes for railway condition monitoring. IEEE Transactions on Intelligent Transportation Systems, 2017, 19(3), 900-909. (IF: 6.319, 中科院大類二區Top、小類一區)
9. Gao MY, Wang P, Cao Y, et al. Design and verification of a rail-borne energy harvester for powering wireless sensor networks in the railway industry[J]. IEEE Transactions on Intelligent Transportation Systems, 2016, 18(6): 1596-1609. (IF: 6.319, 中科院大類二區Top、小類一區)
10. Gao MY, Su CG, Wang P, et al. Harvesting thermoelectric energy from railway track[J]. Energy, 2019, 180: 315-329. (IF: 6.082, 中科院大類二區Top、小類一區)
11. Lu J, Gao MY(通訊作者), Wang P, et al. Health monitoring of urban rail corrugation by wireless rechargeable sensor nodes[J]. Structural Health Monitoring, 2019, 18(3): 838-852. (IF: 4.870, 中科院大類二區Top)
12. Gao MY, Li YW, Lu J, et al. Condition monitoring of urban rail transit by local energy harvesting[J]. International Journal of Distributed Sensor Networks, 2018, 14(11): 1550147718814469.
13. Gao MY, Yang F, Wang P. Symplectic analysis of stationary random vibration of vehicle–track coupled system with rail-borne electromagnetic generator[J]. Advances in Mechanical Engineering, 2018, 10(10): 1687814018804746.
14. Gao MY, Wang P, Cao Y, et al. A rail-borne piezoelectric transducer for energy harvesting of railway vibration[J]. Journal of Vibroengineering, 2016, 18(7): 4647-4663.
15. Wang P, Wang YF, Gao MY(通訊作者), et al. Energy harvesting of track-borne transducers by train-induced wind[J]. Journal of Vibroengineering, 2017, 19(3): 1624-1640.
16. Gao MY, Hu CZ, Chen ZZ, et al. Design and fabrication of a magnetic propulsion system for self-propelled capsule endoscope[J]. IEEE Transactions on Biomedical Engineering, 2010, 57(12): 2891-2902.
17. Gao MY, Hu CZ, Chen ZZ, et al. Finite-Difference Modeling of Micromachine for Use in Gastrointestinal Endoscopy[J]. IEEE Transactions on Biomedical Engineering, 2009, 56(10):2413-2419.

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