蔺晨晖-九游会平台
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  • 清华大学电机系
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    清华大学电机系本科生
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    清华大学电机系研究生
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    清华大学电机系校友会
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    清华大学能源互联网创新研究院
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    清华四川能源互联网研究院
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全部教师

蔺晨晖

助理研究员

研究方向

电力系统运行调控、主动配电网、数据驱动/机器学习理论的应用

北京市海淀区清华大学西主楼3区405

linchenhui@tsinghua.edu.cn

010-62792661

  • 个人介绍
  • 论著专利

个人简介

2015年于清华大学电机系本科毕业,取得工学学士学位,获清华大学优良毕业生;2020年于清华大学电机系博士毕业,取得工学博士学位,获清华大学优秀博士学位论文、北京市优秀毕业生;2022年起于清华大学电机系任助理研究员。

主要研究方向:电力系统运行调控、主动配电网、数据驱动/机器学习理论的应用。入选中国科协青年人才托举工程,曾获北京市科技进步一等奖(排名2)、中国电力企业联合会电力科技创新大奖(特等奖、排名3)、中国电力科学技术进步三等奖(排名3)、清华大学优秀博士学位论文奖、中国科协优秀科技论文、领跑者f5000顶尖论文、日内瓦国际发明展金奖(两次)。担任中国电工技术学会主动配电网及分布式电源专委会秘书、ieee能源互联网协调委员会委员、多本期刊客座编委。发表学术论文30余篇(sci收录18篇,ieee transactions汇刊15篇),申请发明专利50余项,累计被引1000余次。主持、参与国家自然基金青年基金、国家重点研发计划子课题等30余项科技项目。研发了高比例新能源电力系统主配协同能量管理、主动配电网运行调控与集群控制系统及装备,在多个网省级电网推广应用。


个人荣誉

2024年 入选中国科协青年人才托举工程

2023年 北京市科技进步一等奖(排2)

2023年 中国电力企业联合会 电力科技创新大奖(特等,排3)

2023年 日内瓦国际发明展金奖(排3)

2023年 中国电力科技进步三等奖(排3,研发方第1

2023年 国网冀北电力有限公司科技进步一等奖(排3,研发方第1)

2022年 中国科协优秀科技论文

2022年 日内瓦国际发明展金奖

2020年 清华大学优秀博士学位论文

2020年 北京市优秀毕业生

2019年 清华大学研究生一二九奖学金(入围特等奖学金答辩)

2019年 国家奖学金

2017年 国家奖学金

  1. lin c, wu w, zhang b, wang b, zheng w, li z. decentralized reactive power optimization method for transmission and distribution networks accommodating large-scale dg integration. ieee transactions on sustainable energy, 2017, 8(1): 363-373. ()

  2. lin c, wu w, zhang b, sun y. decentralized solution for combined heat and power dispatch through benders decomposition. ieee transactions on sustainable energy, 2017, 8(4): 1361-1372. ()

  3. lin c, wu w, chen x, zheng w. decentralized dynamic economic dispatch for integrated transmission and active distribution networks using multi-parametric programming. ieee transactions on smart grid, 2018, 9(5): 4983-4993. ()

  4. lin c, wu w, guo y. decentralized robust state estimation of active distribution grids incorporating microgrids based on pmu measurements. ieee transactions on smart grid, 2020, 11(1): 810-820. ()

  5. lin c, wu w, shahidehpour m. decentralized ac optimal power flow for integrated transmission and distribution grids. ieee transactions on smart grid, 2020, 11(3): 2531-2540. ()

  6. lin c, wu w, wang b, shahidehpour m, zhang b. joint commitment of generation units and heat exchange stations for combined heat and power systems. ieee transactions on sustainable energy, 2020, 11(3): 1118-1127. ()

  7. lin c, wu w, shahidehpour m, guo y, wang b. a non-iterative decoupled solution of the coordinated robust opf in transmission and distribution networks with variable generating units. ieee transactions on sustainable energy, 2020, 11(3): 1579-1588. ()

  8. wang q, lin c, wu w, wang b, wang g, liu h, zhang h, zhang j. a nested decomposition method for the ac optimal power flow of hierarchical electrical power grids. ieee transactions on power systems, 2023, 38(3): 2594-2609. ()

  9. wang q, wu w, lin c, yang y, wang b. a spatio-temporal decomposition method for the coordinated economic dispatch of integrated transmission and distribution grids. ieee transactions on power systems, 2023. ()

  10. 蔺晨晖, 吴文传, 王彬, 孙勇. 考虑调峰辅助服务的热电联合调度方法. 中国电力, 2019, 52(6): 45-53. (, )

  11. chen x, wu w, zhang b, lin c. data-driven dg capacity assessment method for active distribution networks. ieee transactions on power systems, 2017, 32(5): 3946-3957. ()

  12. xue y, li z, lin c, guo q, sun h. coordinated dispatch of integrated electric and district heating systems using heterogeneous decomposition. ieee transactions on sustainable energy, 2020, 11(3): 1495-1507. ()

  13. chen b, wu w, lin c, guo q, sun h. improving flexibility for microgrids by coordinated optimization of electricity and steam networks. ieee transactions on sustainable energy, 2021, 12(1): 314-324. ()

  14. chen b, wu w, lin c, sun h. coordination of electricity and natural gas systems: an incentive-compatible mutual trust solution. ieee transactions on power systems, 2021, 36(3): 2491-2502. ()

  15. zheng w, wu w, zhang b, lin c. distributed optimal residential demand response considering operational constraints of unbalanced distribution networks. iet generation, transmission & distribution, 2018, 12(9): 1970-1979. ()

  16. wu c, yang l, lin c. multiparametric programming-based coordinated economic dispatch of integrated electricity and natural gas system. ieee system journal, 2023, 17(2): 2523-2533. ()

  17. wu c, gu w, yi z, lin c, long h. non-cooperative differential game and feedback nash equilibrium analysis for real-time electricity markets. international journal of electrical power & energy systems, 2023, 144: 108561. ()

  18. xu s, wu w, yang y, lin c, liu y. chance-constrained joint dispatch of generation and wind curtailment-load shedding schemes with large-scale wind power integration. ieee transactions on sustainable energy, 2023, 14(4): 2220-2233. ()

  19. yang y, wu w, xu s, lin c, wang b. allocating cost of uncertainties from renewable generation in stochastic electricity market: general mechanism and analytical solution. ieee transactions on power systems, 2024, 39(2): 4224-4239. ()

  20. wang s, wu w, lin c, chen b. a dynamic equivalent energy storage model of natural gas networks for joint optimal dispatch of electricity-gas systems. ieee transactions on sustainable energy, 2024, 15(1): 621-632. ()

  21. 吴文传, 张伯明, 孙宏斌, 王彬, 杨越, 刘昊天, 蔺晨晖, 王思远. 主动配电网能量管理与分布式资源集群控制. 电力系统自动化, 2020, 44(9): 111-118. ()

  22. 吴文传, 许书伟, 杨越, 王彬, 蔺晨晖, 沈宇康. 风险量化的高比例新能源电力系统概率调度.电力系统自动化, 2023, 47(15): 3-11. ()

  1. lin c, wu w, li z, zhang b. decentralized economic dispatch for transmission and distribution networks via modified generalized benders decomposition[c]//2017 ieee power & energy society general meeting. ieee, 2017: 1-5. ()

  2. lin c, wu w, zhang b, wang b, yang t, zhao w, qiao z, sun y. energy and ancillary service joint dispatch of power system integrated with dynamic heating system[c]//2017 ieee conference on energy internet and energy system integration (ei2). ieee, 2017: 1-5. ()

  3. lin c, wu w, wang b, sun y. combined heat and power dispatch with start-stop schedule of heat exchange stations[c]//2018 ieee power & energy society general meeting (pesgm). ieee, 2018: 1-5. ()

  4. wang w, wu x, wang z, lin c, li w, wu w, li p, wang b. thermal-hydro-renewable joint stochastic dispatch considering hydro unit forbidden zones and renewable curtailments[c]//2023 ieee/ias industrial and commercial power system asia (i&cps asia). ieee, 2023: 1459-1463. ()

  5. pan x, lu j, lin c, zhao r, wang b, dai y, wu w, sun h. static voltage stability assessment of distribution grids with massive inverter interfaced dgs considering transmission grid coupling[c]//2023 ieee conference on energy internet and energy system integration (ei2).

  6. ruan z, lin c, wang q, wang b, wu w, yang y, lin y, chen h. risk-minimizing real-time dispatch for power systems with high proportion variable renewable generators based on conditional gmm[c]// 2024 cieec.

  7. zheng w, wu w, zhang b, sun h, guo q, lin c. dynamic economic dispatch for microgrids: a fully distributed approach[c]//2016 ieee/pes transmission and distribution conference and exposition (t&d). ieee, 2016: 1-3. ()

  8. wang q, wu w, lin c, li l, yang y. asynchronous distributed optimal load scheduling algorithm[c]//2020 ieee power & energy society general meeting (pesgm). ieee, 2020: 1-5. ()

  9. yang t, guo q, tai x, sun h, zhang b, zhao w, lin c. applying blockchain technology to decentralized operation in future energy internet[c]//2017 ieee conference on energy internet and energy system integration (ei2). ieee, 2017: 1-5. ()

  10. yang t, guo q, lin c, xu l, sun h. coordinated analysis of urban integrated energy-traffic networks based on real-world gps data. energy procedia, 2018, 152: 490-495. ()

  11. wang q, du y, wu w, zhang j, wang b, liu h, lin c, wang g. transmission and distribution networks coordinated volt/var control method and its application in jibei grid[c]//2020 ieee 4th conference on energy internet and energy system integration (ei2). ieee, 1331-1336. ()

  12. khan m, wu w, lin c. grid-forming inverter-based resources high share participation in grid frequency and voltage support[c]//2023 ieee conference on energy internet and energy system integration (ei2).

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