专业:储能工程、电气工程
邮箱:jihaoran@tju.edu.cn
办公地址:天津市南开区天津大学卫津路校区26教学楼E座541办公室
职称:教授,博士生/硕士生导师
【概况】
冀浩然是天津大学教授,博士生导师,入选国家“博新计划”,全球前2%顶尖科学家。“全国高校黄大年式教师团队”和“智能配用电系统与装备全国重点实验室”骨干成员。聚焦新型配电系统与储能系统运行优化取得创新突破。以第一(共一)/通讯作者发表Nature Communications 等 SCI 高水平论文30余篇,发表ESI高被引论文6篇,出版柔性化配电网首部英文专著1部,授权发明专利30余项。主持国家科技重大专项课题、国自然联合基金集成项目课题、国家/天津市自然科学基金等纵向项目;获天津市科技进步一等奖、中国电工技术学会科技进步一等奖、中国产学研合作促进会科技创新二等奖。担任CIGRE国家委员会Cl专委会委员,Cell子刊iScience 科学编辑、TOP 期刊PCMP编委,CIGRE D2.60 工作组专家成员。
【教育背景】
(1) 2014.09-2019.06 天津大学,电气工程,工学博士,导师:王成山院士,李鹏教授 (2) 2010.09-2014.06 天津大学,电气工程及其自动化,工学学士
【学术经历】
(1) 2025.01-至今 天津大学,电气工程系,教授,博士生/硕士生导师 (2) 2021.05-2024.12 天津大学,电气工程系,英才副教授 (3) 2019.10-2020.01 Mälardalen University,访问学者,导师:Jinyue Yan院士 (4) 2019.07-2021.05 天津大学,电气工程系,博士后(国家“博新计划”入选者)
【讲授课程】
(1) 电力系统分析; (2) 智能配电系统概论。
【教学成果】
连续三学年获评学院“优秀班主任”,获评天津大学本科生毕业设计(论文)优秀指导教师、天津大学优秀硕士学位论文指导教师。 坚守课堂阵地,积极推行教改。主持天津大学国家储能平台新工科研究与实践项目2项,发表教改论文2篇,积极推进教学创新改革。 注重五育并举,致力人才培养。聚焦国家低碳能源使命,鼓励学生深入参与科研实践与学科竞赛,培养“国际化”能源创新人才。科教融合培养创新人才,指导学生获得多项国家级/省部级竞赛奖励,具体如下: (1) 共青团中央“挑战杯”全国大学生课外学术科技作品竞赛全国特等奖,第1指导教师,2024; (2) 教育部中国国际大学生创新大赛(“互联网+”大赛)全国银奖,第1指导教师,2024; (3) 高校电气电子工程创新大赛全国一等奖,第1指导教师,2024; (4) 第十一届中国研究生能源装备创新设计大赛全国二等奖,第2指导教师。
【研究方向】
(1) 柔性配电系统优化规划与灵活运行; (2) 配电系统边缘智能控制; (3) 分布式可再生能源与储能系统。
【学术兼职】
(1) CIGRE中国国家委员会C1专委会委员; (2) iScience (CelI子刊, 中科院SCI二区),副编辑(Associate Editor); (3) Protection and Control of Modern Power Systems,(中科院SCI一区TOP),编委(Editorial Board Member); (4) Advances in Applied Energy (ESCI, 中科院一区TOP),编委(Editorial Board Member); (5) eScience,(IF:42.9, 中科院SCI一区TOP),青年编委(Young Editorial Board Member); (6) Ain Shams Engineering Journal (中科院SCI二区),编委(Editorial Board Member); (7) IEEE PES Task Force on Solid State Transformer,工作组专家; (8) IEEE PES电力系统运行、规划与经济技术委员会(中国)分布式资源与配电网规划分委会,理事; (9) IEEE Senior Member; (10) 中国电工技术学会电力系统控制与保护专委会委员; (11) 中国通信学会能源互联网专委会委员; (12) 天津市电力新能源与智能配用电技术工程研究中心副主任。
【科研项目及成果】
(1) 2025-2028,国家自然科学基金联合基金集成项目课题,主持; (2) 2024-2028,2030智能电网-国家科技重大专项课题,主持; (3) 2024-2027,天津市自然科学基金面上项目,主持; (4) 2021-2023,国家自然科学基金青年基金项目(优秀结题),主持; (5) 2021-2023,天津市应用基础研究项目,主持; (6) 2020-2021,中国博士后科学基金面上项目,主持; (7) 2019-2021,国家博士后创新人才支持计划项目,主持。
【代表性论著】
[1] Peng Li, Haoran Ji, Hao Yu, Chengshan Wang. Flexible Distribution Networks. Elsevier, 2023. (柔性配电系统英文专著) [2] Rui Wang†, Haoran Ji†, Peng Li*, et al. Multi-resource Dynamic Coordinated Planning of Flexible Distribution Network. Nature Communications, 2024, 15: 4576. (SCI一区TOP) [3] Jie Jian, Jinli Zhao, Haoran Ji*, et al. Supply restoration of data centers in flexible distribution networks with spatial-temporal regulation. IEEE Transactions on Smart Grid, 2024, 15(1): 340-354. (SCI一区TOP, ESI高被引) [4] Yanda Huo, Peng Li, Haoran Ji*, et al. Data-driven coordinated voltage control method of distribution networks with high DG penetration. IEEE Transactions on Power Systems, 2023, 38(2): 1543-1557. (SCI一区TOP, ESI高被引) [5] Haoran Ji, Chengshan Wang, Peng Li*, et al. Robust operation of soft open points in active distribution networks with high penetration of photovoltaic integration. IEEE Transactions on Sustainable Energy, 2019, 10(1): 280-289. (SCI一区TOP, ESI高被引) [6] Peng Li, Haoran Ji, Chengshan Wang*, et al. Optimal operation of soft open points in active distribution networks under three-phase unbalanced conditions. IEEE Transactions on Smart Grid, 2019, 10(1): 380-391. (SCI一区TOP, ESI高被引) [7] Peng Li, Haoran Ji, Chengshan Wang*, et al. Coordinated control method of voltage and reactive power for active distribution networks based on soft open point. IEEE Transactions on Sustainable Energy, 2017, 8(4): 1430-1442. (SCI一区TOP, ESI高被引) [8] Haoran Ji, Yuxin Zheng, Hao Yu*, et al. Asymmetric bargaining-based SOP planning considering peer-to-peer electricity trading. IEEE Transactions on Smart Grid, 2025, 16(2): 942-956. (SCI一区TOP) [9] Ziqi Zhang, Peng Li, Haoran Ji*, et al. Adaptive voltage control of inverter-based DG in active distribution networks with measurement-strategy mapping matrix. IEEE Transactions on Sustainable Energy, 2025, 16(2): 1238-1252. (SCI一区TOP) [10] Shiyuan Gao, Peng Li, Haoran Ji*, et al. Data-driven multi-mode adaptive operation of soft open point with measuring bad data. IEEE Transactions on Power Systems, 2024, 39 (5): 6482-6495. (SCI一区TOP) [11] Jinli Zhao, Jiahui Qu, Haoran Ji*, et al. Robust operation of flexible distribution network with large-scale EV charging loads. IEEE Transactions on Transportation Electrification, 2024, 10(1): 2207-2219. (SCI一区TOP) [12] Chenhai Li, Jinli Zhao, Haoran Ji*, et al. Data-model hybrid-driven adaptive voltage control for active distribution networks. Journal of Cleaner Production, 2024, 450:141999. (SCI一区TOP) [13] Ziqi Zhang, Peng Li, Haoran Ji*, et al. Combined central-local voltage control of inverter-based DG in active distribution networks. Applied Energy, 2024, 372: 123813. (SCI一区TOP) [14] Haoran Ji, Jie Jian, Hao Yu*, et al. Peer-to-peer electricity trading of interconnected flexible distribution networks based on distributed ledger. IEEE Transactions on Industrial Informatics, 2022, 18(9): 1-13. (SCI一区TOP) [15] Jie Jian, Peng Li, Haoran Ji*, et al. DLMP-based quantification and analysis method of operational flexibility in flexible distribution networks. IEEE Transactions on Sustainable Energy, 2022, 13(4): 2353-2369. (SCI一区TOP) [16] Haoran Ji, Sirui Chen, Hao Yu*, et al. Robust operation for minimizing power consumption of data centers with flexible substation integration. Energy, 2022, 248: 123599. (SCI一区TOP) [17] Yanda Huo, Peng Li, Haoran Ji*, et al. Data-driven adaptive operation of soft open points in active distribution networks. IEEE Transactions on Industrial Informatics, 2021, 17(12): 8230-8242. (SCI一区TOP) [18] Peng Li, Jie Ji, Haoran Ji*, et al. MPC-based local voltage control strategy of DGs in active distribution networks. IEEE Transactions on Sustainable Energy, 2020, 11(4): 2911-2921. (SCI一区TOP) [19] Haoran Ji, Chengshan Wang, Peng Li*, et al. Quantified analysis method for operational flexibility of active distribution networks with high penetration of distributed generators. Applied Energy, 2019, 239: 706-714. (SCI一区TOP) [20] Haoran Ji, Chengshan Wang, Peng Li*, et al. A centralized-based method to determine the local voltage control strategies of distributed generator operation in active distribution networks. Applied Energy, 2018, 228: 2024-2036. (SCI一区TOP)