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张云顺
点击数: 1016     发布日期:2017-05-18

个人情况

张云顺,198811月,江苏淮阴人,博士,资格副教授,日本东京大学生产技术研究所(IIS)Associate Research Fellow。2011年9月赴日本留学,2017年3月获东京大学博士学位,指导教官中野公彦(Kimihiko NAKANO)先生;2014年3月获日本国立群马大学硕士学位,指导教员桥本诚司(Seiji HASHIMOTO)先生。期间并与日本汽车零部件制造商Mitsuba,英国思克莱德大学Matthew P. CARTMELL教授等开展项目合作与学术交流。东京digiart,Inc.首席技术执行官。联系方式:zysgluck(at)ujs.edu.cn  (at)→@


研究方向

基于振动与控制理论的汽车非线性振动发电;节能,新能源汽车


主要论著

已在海外核心学术期刊及会议发表论文20余篇, 部分论著如下:

(1)   Yunshun Zhang, Rencheng Zheng, Tsutomu Kaiuka, Dongxu Su, Kimihiko Nakano, and Matthew P. Cartmell, Broadband vibration energy harvesting by application of stochastic resonance from rotational environments, The European Physical Journal, 224(14): 2687-2701, 2015, DOI: 10.1140/epjst/e2015-02583-7 (Copyright @2015 EDP Sciences and Springer).

(2)   Yunshun Zhang, Rencheng Zheng, Kenji Ejiri, Dongxu Su, and Kimihiko Nakano, Modelling analysis for vibration energy harvesting excited by low-speed automobile tires, Transactions of the JSME, 82(840): 1-11, 2016, DOI: 10.1299/transjsme.15-00645 (In Japanese) (Copyright @2016 The Japan Society of Mechanical Engineers).

(3)   Yunshun Zhang, Rencheng Zheng, Keisuke Shimono, Tsutomu Kaizuka, and Kimihiko Nakano, Effectiveness testing of a piezoelectric energy harvester for an automobile wheel using stochastic resonance, Sensors, 16(10): 1727, 2016, DOI: 10.3390/s16101727 (Copyright @2016MDPI AG).

(4)   Yunshun Zhang, Rencheng Zheng, and Kimihiko Nakano, Feasibility of energy harvesting from a rotating tire based on the theory of stochastic resonance, Journal of Physics: Conference Series PowerMEMS 2014, 557(1): 012097, Hyogo, Japan, 2014, DOI: 10.1088/1742-6596/557/1/012097 (Copyright @2014 IOP Publications).

(5)    Yunshun Zhang, Rencheng Zheng, Tsutomu Kaizuka, and Kimihiko Nakano, Study on tire-attached energy harvester for low-speed actual vehicle driving, Journal of Physics: Conference Series PowerMEMS 2015, 660(1): 012126, Boston, USA, 2015, DOI: 10.1088/1742-6596/660/1/012126 (Copyright @2015 IOP Publications).

(6)    Yunshun Zhang, Kimihiko Nakano, Rencheng Zheng, and Matthew P. Cartmell, Adjustable nonlinear mechanism system for wideband energy harvesting in rotational circumstances, Journal of Physics: Conference Series MOVIC & RASD, 744(1): 012079, Southampton, UK, 2016, DOI: 10.1088/1742-6596/744/1/012079 (Copyright @2016 IOP Publications).

(7)   Yunshun Zhang, Rencheng Zheng, Kimihiko Nakano, and Matthew P. Cartmell, Energy harvesting from vehicle tires using stochastic resonance, The 4th Korea-Japan Joint Symposium on Dynamics and Control, pp. 106-109, Busan, Korea, May, 2015.

(8)   Yunshun Zhang, Rencheng Zheng, Dongxu Su, and Kimihiko Nakano, Modelling analysis for vibration energy harvesting excited by low-speed automobile tires, Dynamics and Design Conference 2015, No.15-7, Hirosaki, Aomori, August, 2015. (In Japanese) 

(9)    張云順,淡路創介,永井伸幸,藤倉良充,高橋潤平,橋本誠司,笠井周,須藤健二, 岡田宏昭,熊谷俊司(株式会社ミツバ), 振動発電用圧電デバイスの発電特性とインピーダンス整合, 電気学会,ETT-12-52, 宇都宮, 2013-03.

(10)   Michitaka Kawano, Yunshun Zhang, Rencheng Zheng, Kimihiko Nakano, and Beomjoon Kim, Feasibility of energy harvesting using vertical bi-stable cantilever with tip mass based on stochastic resonance, 2015 JSME-IIP/ASME-ISPS Joint Conference on Micromechatronics for Information and Precision Equipment, Kobe, Japan, 2015.

(11)  Michitaka Kawano, Yunshun Zhang, Rencheng Zheng, Kimihiko Nakano, and Beomjoon Kim, Modelling and fabrication of perpendicular bi-stable cantilever for vibrational energy harvesting grounded on stochastic resonance, Micro and Nano Engineering 2015, Hague, Netherlands, 2015.

(12)  Michitaka Kawano, Yunshun Zhang, Rencheng Zheng, Kimihiko Nakano, and Beomjoon Kim, Design and manufacture of perpendicular bi-stable cantilever for vibrational energy harvesting on the basis of stochastic resonance, Journal of Physics: Conference Series PowerMEMS 2015, 660(1): 012104, Boston, USA, 2015, DOI: 10.1088/1742-6596/660/1/012104 (Copyright @2015 IOP Publications).


分享链接

东京大学生产技术研究所(IIS)


更新日期

May 18, 2017