目录
硕士报考志愿采集    更新日期:2023年12月6日
姓 名 戴可人 性 别
出生年月 1991年10月 籍贯
民 族 汉族 政治面貌 中国共产党党员
最后学历 博士研究生 最后学位 工学博士
技术职称 副研究员 导师类别 硕士生导师
导师类型 校内 兼职导师
行政职务 Email dkr@njust.edu.cn
工作单位 机械工程学院 邮政编码
通讯地址
单位电话
个人主页
指导学科
学科专业(主) 0802|机械工程 招生类别 硕士 所在学院 机械工程学院
研究方向

智能引信微系统技术,包括微纳能源、智能传感器与执行器、轻量化智能信号处理与协同控制等

工作经历

2021.7-至今,南京理工大学机械工程学院,副研究员、硕士生导师(其中2021.6-2022.6,成均馆大学, Visiting Professor

2018.10-2021.6,南京理工大学机械工程学院,助理研究员

教育经历

2014.8-2018.10,清华大学精密仪器系,博士研究生,师从尤政院士

2010.8-2014.7,清华大学精密仪器系,本科

获奖、荣誉称号

第九届中国科协青年人才托举工程(2023)

江苏省“双创博士”(2019)

社会、学会及学术兼职

IEEE Senior Member

中国仪器仪表学会,高级会员

中国微米纳米技术学会,高级会员,会刊Nanotechnology and Precision Engineering(ESCI期刊)青年编委

Nano Energy、Applied Energy、ISA Transactions、Defence Technology、Measurement等中科院一区二区SCI期刊审稿人

担任Guest Editor, 在SCI期刊Sensors开办Integtation of Sensing and Energy Supply专刊

科研项目

自2019年以来,主持国家自然科学基金青年基金,其他省部级以上基金项目3项

发表论文

至2023年12月,累计发表SCI/EI论文60余篇,详见谷歌学术个人主页

代表性论文(#为共同一作,*为通讯作者)

1. Zhu Z#, Wang Z#, Dai K*, Wang X, Zhang H, Zhang W*. An adaptive and space-energy efficiency vibration absorber system using a self-sensing and tunable magnetorheological elastomer[J]. Nano Energy, 2023, 117: 108927.

2. Dai K#, Huo Z Y#, Miao X, Xiong P, Zhang H, Wang X, You Z*, Kim S W*. Self-powered triboelectric functional devices and microsystems in health-care applications: an energy perspective[J]. EnergyChem, 2023, 5(6): 100109.

3. Ma X, Shi H, Miao X, Li Q, Wang X, Ding L, Zhang H*, Dai K*. Multiple dynamic impact signal identification method based on lightweight neural network with acceleration sensor[J]. IEEE Sensors Journal, 2023, 23(15): 17289 - 17300.

4. Ma X, Dai K*, Zou Y*, Yu H, Zhang H, Wang X. Fixed-time anti-saturation grouped cooperative guidance law with state estimations of multiple maneuvering targets[J]. Journal of the Franklin Institute, 2023, 360(8): 5524-5547.

5. Chen Z, Dai K*, Chen J, Zhao J, Zhao D, Ma R, Zhang X, Li X, Wang X*, Yang G, Yi F*. Influence of the Reference Electrode on the Performance of Single‐Electrode Triboelectric Nanogenerators and the Optimization Strategies[J]. Advanced Science, 2023, 10(17): 2206950.

6. Huang J, Dai K*, Yin Y, Chen Z, Wang X*, You Z. Generalized modeling and experimental research on the transient response of supercapacitors under compressive mechanical loads[J]. Nano Research, 2023, 16: 6859–6869.

7. Dai K, Miao X, Zhang W, Huang X*, Zhang H, Kim S W*. Robust Displacement Sensing by Direct‐Current Triboelectric Nanogenerator Via Intelligent Waveform Recognition[J]. Advanced Science, 2023, 10(4): 2204694.

8. Qi N, Dai K*, Wang X*, You Z. Optimization for piezoelectric energy harvesters with self-coupled structure: A double kill in bandwidth and power[J]. Nano Energy, 2022, 102: 107602

9. Dai K, Zhu Z, Jin H, Ma X, Duan W, Wang J, Zhang W*. Bionic Soft Multimodal Actuators for Fast, Large Deformation under Ultralow Magnetic Conditions[J]. Advanced Materials Interfaces, 2022, 9(17): 2200351.(封底文章

10. Qi N, Dai K*, Wang X*, You Z. Adaptive Capacitor Charging Circuit With Simplified Configuration for Efficient Piezoelectric Energy Harvesting[J]. IEEE Transactions on Power Electronics, 2022, 37(9): 10267-10280.

11. Dai K#, Liu D#, Yin Y, Wang X*, Wang J*, You Z, Zhang H, Wang Z L. Transient physical modeling and comprehensive optimal design of air-breakdown direct-current triboelectric nanogenerators[J]. Nano Energy, 2022, 92: 106742.

12. Liu X, Qi N, Dai K*, Yin Y, Zhao J, Wang X*, You Z. Sponge Supercapacitor rule-based energy management strategy for wireless sensor nodes optimized by using dynamic programing algorithm[J]. Energy, 2022, 239: 122368.

13. Yu H, Dai K*, Li H, Zou Y, Ma X, Ma S, Zhang H*. Distributed cooperative guidance law for multiple missiles with input delay and topology switching[J]. Journal of the Franklin Institute, 2021, 358(17): 9061-9085.

14. Yu D, Ren D, Dai K*, Zhang H*, Zhang J, Yang B, Ma S, Wang X, You Z*. Failure mechanism and predictive model of lithium-ion batteries under extremely high transient impact[J]. Journal of Energy Storage, 2021, 43: 103191.

15. Qi N#, Yin Y#, Dai K*, Wu C, Wang X*, You Z. Comprehensive optimized hybrid energy storage system for long-life solar-powered wireless sensor network nodes[J]. Applied Energy, 2021, 290: 116780.

16. Zhang C#, Dai K#, Liu D, Yi F*, Wang X*, Zhu L, You Z. Ultralow Quiescent Power‐Consumption Wake‐Up Technology Based on the Bionic Triboelectric Nanogenerator[J]. Advanced Science, 2020, 7(12): 2000254.

17. Li Q#*, Dai K#, Zhang Y, Zhang H. Integrated waveform for a joint radar-communication system with high-speed transmission[J]. IEEE Wireless Communications Letters, 2019, 8(4): 1208-1211.

18. Zhang Y, Li Q*, Huang L, Dai K*, Song J. Optimal design of cascade LDPC-CPM system based on bionic swarm optimization algorithm[J]. IEEE Transactions on Broadcasting, 2018, 64(3): 762-770.

19. Dai K, Wang X*, Yi F, Jiang C, Li R, You Z*. Triboelectric nanogenerators as self-powered acceleration sensor under high-g impact[J]. Nano Energy, 2018, 45: 84-93.

20. Dai K, Wang X*, Yi F, Yin Y, Jiang C, Niu S, Li Q, You Z*. Discharge voltage behavior of electric double-layer capacitors during high-g impact and their application to autonomously sensing high-g accelerometers[J]. Nano Research, 2018, 11(2): 1146-1156.

21. Dai K, Wang X*, Niu S*, Yi F, Yin Y, Chen L, Zhang Y, You Z*. Simulation and structure optimization of triboelectric nanogenerators considering the effects of parasitic capacitance[J]. Nano Research, 2017, 10(1): 157-171.

科研创新

授权国家发明专利11项

指导学生情况

现指导硕士生7名,协助指导博士生3名、硕士生2名

协助指导的博士生马翔获得2023年研究生国家奖学金

我的团队

隶属于张合教授团队,学术资源丰富

与清华大学尤政院士智能微系统团队、韩国延世大学Sang-Woo Kim教授团队长期合作