姓名:胡昊
性别:男
职称:副教授,硕导
学位:博士
电子邮件: huh24@fzu.edu.cn
研究方向: 电机与电器,高电压与绝缘技术,先进绝缘材料与结构设计,电力设备状态检测与评估,输配电装备可靠性提升关键技术
教育工作经历
2024.08-至今:福州大学,电气工程与自动化学院,副教授
2018.08-2024.07:清华大学,深圳国际研究生院,电气工程,博士
2014.08-2018.07:清华大学,电机工程与应用电子技术系,电气工程及其自动化,本科
个人简介
福建省高层次C类人才,主持国家自然科学基金青年项目、福建省自然科学基金面上项目、国家电网/南方电网科技项目、福州大学科研启动项目等多项研究课题,参与国家自然科学基金面上项目2项、南方电网重点项目等企业科技项目3项。获机械工业科学技术二等奖1项,发表SCI/EI检索论文30余篇,授权发明专利2项。入选福建省组织部引进生计划,担任《电磁避雷器》、《环境技术》等期刊青年编委。
代表性论文
[1] Hu H, Xu W, Fan W, et al. Accurate Evaluation of Interfacial Pressure in Cable Accessories Subject to Nonhomogeneous Degradation[J], IEEE Transactions on Dielectrics and Electrical Insulation, 2025, 32(6): 3764-3767.
[2] 胡昊, 徐文, 谭嘉明等. 非均匀劣化条件下电缆附件界面压强演变特性与评估方法研究[J], 电工技术学报, 录用待刊出.
[3] Hu H, Li X, Fan W, et al. Precise Operational Characteristics of Cable Accessories Considering Mechanical Stretching[J], IEEE Transactions on Dielectrics and Electrical Insulation, 2025, 32(2): 1246-1249.
[4] Hu H, Xu W, Fan W, et al. A Non-Destructive Airtightness Testing Method for Assessing Interfacial Performance of Cable Accessories[J], IEEE Transactions on Power Delivery, 2025.
[5] Hu H, Cao B, Zhang Y, et al. Study on Electrical Properties of Silicone Rubber Insulation for Cable Accessories Under Mechanical Stretching[J]. High Voltage, 2025.
[6] Hu H, Li X, Wang Z, et al. Moisture Degradation Characteristics and Multi-Performance-Based Status Assessment Method of Distribution Cables[J], IEEE Transactions on Power Delivery, 2024, 39(6): 3017-3027.
[7] Hu H, Jia Z, Wang X, et al. Analysis of Conductance and Interfacial Polarisation Behaviours of Silicone Rubber Based on Frequency Domain Spectroscopy[J]. High Voltage, 2023, 9(1): 56-65.
[8] Hu H, Jia Z, Wang X. Aging Mechanism of Silicone Rubber Under Thermal–Tensile Coupling Effect[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2022, 29(1): 185-192.
[9] Wu C, Zhang Y, Zheng J, et al. Dual-Stage Optimization for Cable Fault Localization Wavelet Adaptive Denoising and PSO-GA Hybrid Windowing[J]. IEEE Transactions on Instrumentation and Measurement, 2025. (通讯作者)
[10] Hu H, Li X, Jia Z, et al. Water Tightness Testing and Evaluation of Composite Interface Structures in Cable Joints[C]//2023 IEEE 4th International Conference on Electrical Materials and Power Equipment (ICEMPE). IEEE, 2023: 1-4.
[11] Hu H, Zhou H, Jia Z, et al. Changes in Dielectric and Mechanical Properties of Silicone Rubber Caused by Silicone Grease Absorption[C]//2022 IEEE International Conference on High Voltage Engineering and Applications (ICHVE). IEEE, 2022: 1-4.
[12] Hu H, Jia Z, Wang X, et al. Simulation of mechanical pressure of XLPE-SiR interface in cable joints based on operating temperature and interference parameters[C]//2020 IEEE International Conference on High Voltage Engineering and Application (ICHVE). IEEE, 2020: 1-4.
[13] Li X, Hu H, Song K, et al. Voltage Endurance Characteristics of Cross-linked Polyethylene-Silicone Rubber Interface Subjected to DC and AC Voltages[J], IEEE Transactions on Dielectrics and Electrical Insulation, 2025, 32(2): 690-698.
[14] Zhu B, Jia Z, Hu H, et al. Interface resistivity and interfacial DC breakdown voltage of double-layer dielectrics[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2019, 26(4): 1181-1189.
[15] Zhu B, Jia Z, Hu H, et al. Relationship between the interfacial ramped DC breakdown voltage and the morphology of the XLPE/SiR interface[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2019, 26(3): 689-697.
[16] Li X, Hu H, Wang Z, et al. Effect of Silicone Grease on the Dielectric Property of Silicone Rubber for Cable Joint[C]//2023 IEEE 4th International Conference on Electrical Materials and Power Equipment (ICEMPE). IEEE, 2023: 1-4.
[17] Zhu B, Hu H, Jia Z, et al. Effects of silicone grease on silicone rubber in physical characteristics[C]//2018 IEEE 2nd International Electrical and Energy Conference (CIEEC). IEEE, 2018: 407-410.
学术兼职
《High Voltage》、《高电压技术》等期刊审稿人
《电磁避雷器》《环境技术》等期刊青年编委
教育部学位论文评审专家
中国电工技术学会高级会员
招生说明
1.招生对象:招收电机与电器方向学术型研究生、电气工程专业型研究生,同时欢迎对相关方向感兴趣的本科生加入课题组开展毕业设计。
2.培养理念:充分尊重学生科研兴趣与个人意愿,根据每位同学的兴趣特长,协助制定个性化的研究计划。
3.提升途径:与清华大学、广州供电局等高校、科研机构建立了密切的合作关系,支持学生在合适阶段前往相关单位开展联合研究、课题合作,全面提升科研能力、工程素养与综合竞争力。
4.成长氛围:课题组氛围开放融洽,定期组织组会研讨和团建活动,鼓励学生参加国内外学术会议,近年多名学生获国家奖学金。
更多团队及个人信息见团队主页:https://www.x-mol.com/groups/fzu_insulation