王渊

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姓名:王渊

所在院系:电气与电子工程学院

研究方向 (Focus Area)

Ø 电气装备先进传感检测

Ø 储能电池失效机制与诊断

联系方式

电子邮箱:yuan.wang@ncepu.edu.cn

一、个人简介

王渊,男,博士,特聘副教授,2017年、2022年在华北电力大学大学获得学士、博士学位,2022年到2026年在北京大学从事博雅博士后研究工作。主要从事基于光纤传感的锂电池状态感知、化学组分光纤传感、设备运行状态智慧感知等研究,主持国家自然科学基金青年项目、国家重点研发计划子课题、国家资助博士后研究人员计划等纵向科研项目。在Energy & Environmental Science、Nature Communications、Advanced Science、Chemical Engineering Journal等SCI期刊发表论文30余篇,曾获中国电工技术学会科学技术进步奖一等奖。

二、承担科研项目

[1] 国家自然科学基金青年科学基金项目(C类),基于厘米级光学探针的变压器油中溶解气体高灵敏度原位快速感知研究,2026-01至2028-12,项目负责人

[2] 国家重点研发计划,微重力近极限燃烧多物理场调控机制及方法,2025-12至2030-11,子课题负责人

[3] 中国博士后科学基金会国家资助博士后研究人员计划项目,基于全光纤探针的等离子体电催化合成氨非均相特征产物原位检测技术,2023-12至2025-12,项目负责人

[4] 强电磁技术全国重点实验室开放课题,基于全光纤探针的锂电池运行状态原位智慧感知,2025-07至2026-07,项目负责人

[5]新能源电力系统全国重点实验室开放课题,基于油芯光纤的变压器油中溶解气体原位检测技术研究,2023-07至2024-12,项目负责人

三、主要获奖荣誉

[1] 中国电工技术学会科学技术进步奖一等奖(10/15)

[2] 入选北京大学博雅博士后计划

四、代表性著作

[1] Wang, Y.†, Guo, S.†, Guo, Y., et al., Operando observing hydrogen evolution in commercial lithium-ion batteries. Energy & Environmental Science, 2025, 18, 8756-8767. (IF=30.8,封面文章,一区TOP)

[2] (共一作) Guo, S.†, Wang, Y.†, Guo, Y., et al., Nitrogen fixation in a non-equilibrium spatially distributed electric field. Nature Communications, 2026, 17, 3680 (Nature子刊, IF=18.1,一区TOP)

[3] (共一作) Guo, Y.†, Wang, Y.†, Guo, S., et al., Cylindrical Battery Gas Evolution Analysis via Optical Fiber Based Non-invasive Gas Pressure Monitoring. IEEE Transactions on Instrumentation and Measurement, 2026, 75, 1-9. 

[4] Wang, Y.†, Guo, Y.†, Guo, S., et al., Operando monitoring and prediction of temperature in commercial sodium-ion batteries via optical fiber sensors. International Journal of Electrical Power & Energy Systems, 2025, 170, 110893.

[5] Wang, Y., Ma, G., Zheng, D., et al., Transformer oil-dissolved acetylene detection with photonic crystal fiber loop ringdown spectroscopy. Sensors and Actuators B: Chemical, 2021, 346, 130590. (一区TOP)

[6] Wang, Y., Ma, G., Zheng, D., et al., Gas concentration sensing based on fiber loop ring-down spectroscopy: a review. IEEE Transactions on Instrumentation and Measurement, 2021, 70, 1-16. 

[7] Wang, Y., Ma, G., Zheng, D., et al., Detection of dissolved acetylene in power transformer oil based on photonic crystal fiber. IEEE Sensors Journal, 2020, 20(18), 10981-10988.

[8] Ma, Y., Li, J., Wang, Y.*, et al., Hollow-core fiber-based photothermal interferometric sensor for ethylene detection. IEEE Sensors Journal, 2026, 26(13), 20397-20404.

[9] Ma, Y., Wang, Y.*, Li, J., et al., Non-invasive internal temperature prediction of lithium-ion batteries under elevated ambient temperatures. Energy Technology, 2026, 14(9), e70646.

[10] Guo, S., Liu, R., Jia, Q., Guo, Y., Liu, B., Wang, Y., et al., A Plasma-Assisted Pulsed Heating Approach for Efficient Methane. Chemical Engineering Journal, 2026. (IF=12.5,一区TOP)

[11] Jiang, J., Luo, S., Cui, D., Huang, Z., Jiang, S., Fu, R., Wang, Y., Synergistic Enhancement of Electrical‐Thermal Properties in KH550/G‐POSS Functionalized BN/Epoxy Composites for High‐Frequency Transformer Insulation. Advanced Science, 2026, e75952. (IF=14.1,一区TOP)