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闫士杰

副教授

  

教育经历

1982.9-1986.6 东北大学自动控制系自动化专业学士学位

1986.9-1989.1东北大学自动控制系控制理论与控制工程专业硕士学位

2007.3-2010.1 东北大学 信息科学与工程学院 检测技术与自动化装置专业 博士学位

  

工作经历

1988.6-1991.5东北大学信息科学与工程学院助教

1991.5-1999.5东北大学信息科学与工程学院讲师

1999.5-至今 东北大学 信息科学与工程学院 副教授

  

研究方向

电力电子与新能源控制;电气传动;智能电网;储能系统;智慧能源与能源互联网

  

招收博士/硕士方向

欢迎电气工程专业学生报考硕士研究生。

  

项目

1.新型电力系统电能质量综合分析与治理系统,2022

2.电动汽车充电桩集群接入配电网智能控制与管理,2022

3.面向新能源配电网的低电压及线损分析系统,2021

4.超大规模电池储能电站控制及其暂态特性,2018。

5.智慧园区配电网系统控制与应用,2017。

6.大规模储能电站运行控制技术,2014。

7.基于矩阵摄动理论的多源多载微电网稳定与优化控制,2015。

8.智能高压设备物联网控制系统,2014。

9.基于能量优化控制的模块化光伏变换器系统,2013。

10.微电网中功率变换器的协调与优化控制,2010。

11.高压四象限特种变频器系统,2009。

12.电气传动及控制系统节能技术,2007。

13.燃机(微型)控制与电力变换系统,2003。

学术成果

专著或教材

1.《电气传动控制系统》,冶金工业出版社,2017

2.《电气传动控制技术》,冶金工业出版社,2013

3.《通用变频器及其应用》,机械工业出版社,2011

  

期刊论文

1.Optimal Dispatch for Battery Energy Storage Station in Distribution Network Considering Voltage Distribution Improvement and Peak Load Shifting,JOURNAL OF MODERN POWER SYSTEMS AND CLEAN ENERGY,2022, 10(1):131-139.

2.SOC Balancing Control Based on Multi-agent of Multiple Energy Storage Units in MMC High Power Energy Storage System, CSEE JOURNAL OF POWER AND ENERGY SYSTEMS 2022,12.

3.Multi-Time scale control framework of hybrid energy storage system via robust control and virtual impedance, ENERGY REPORTS,2022,8(10):358-366.

4.SOC consensus control and analysis based on specified sampled-data for large-scale energy storage system, ENERGY REPORTS,2022, 8(1):1093-1101.

5.大功率模块化储能系统SOC优化均衡控制,电网技术, 2021,45(1):49-56.

6.基于采样数据的大规模储能系统一致性控制,东北大学学报(自然科学版), 2020,41(11):1528-1534.

7.基于交替方向乘子法的超大规模储能系统分布式协同优化,电网技术,2020,44(1):1-10.

8.混合储能系统的功率变换器电流预测控制方法,电力建设,2020,41(1):71-79.

9.Comprehensive Frequency Regulation Schemefor Permanent Magnet SynchronousGenerator-based Wind Turbine GenerationSystem,IET Renewable Power Generation,2019, 13(2):234-244.

10.A State of the Art Review on Frequency Response of Wind Power Plants in Power Systems, Journal of Modern Power Systems and Clean Energy,2018,6(1):1-16.

11.基于矩阵摄动理论的微电网建模与优化控制,东北大学学报(自然科学版), 2018,39(9):1217-1220,1231.

12.Coordinated Control Strategy of Battery Energy Storage System and PMSG-WTG to Enhance System Frequency Regulation Capability, IEEE Transactions on Sustainable Energy, 2017, 8(3):1330-1343.

13.一种新型独立模块式永磁电机电感耦合分析,东北大学学报(自然科学版), 2017,38(12):1677-1680,1690.

14.带自适应估计器的微电网逆变器跟踪控制,电机与控制学报,2016,20(11):10-17.

15.带多频段采样观测器的单相逆变器控制,中国电机工程学报,2013,33(12):81-89.

  

会议论文

1.Design and Magnetic Field Analysis for Novel Module Integrated Permanent Magnet Synchronous Motor,2022 International Conference on Power Energy Systems and Applications (ICoPESA), 25-27 February 2022,pp:396-404, Singapore,2022.

2.Data-driven Model-free Adaptive Control of High Power Converters in Super-large-scale Energy Storage Station,38th Chinese Control Conference(CCC), 27-30July, 2019,pp:7245-7249,Guangzhou,2019.

3.Modeling and Robust Control with Virtual Inertia for Super-large-Scale Battery Energy Storage System, The 31th Chinese Control and Decision Conference(CCDC), 3-5June,2019, pp:5636-5640,Nanchang,2019.

4.A Multi-parameter Rapid Optimization Method of Inverter-based Microgrid, Proceedings of the IEEE Power Engineering Society Transmission and Distribution Conference, 16-19 August,2018, pp:1-5, Denver, CO,USA, 2018.

5.Modeling and Analysis of Secondary Controlled Virtual Synchronous Generator with Dynamic Droop for Microgrid, 2017 IEEE Conference on Energy Internet and Energy System Integration, 26-28 November,2017, pp:1-6, Beijing, 2017.

6.Distributed Cooperative Control of Virtual Synchronous Generator Based Microgrid, 2017 IEEE International Conference on Electro Information Technology, 14-17 May,2017, pp: 506-511, Lincoin, NE, USA, 2017.

7.A MPPT Algorithm Based on Extremum Seeking with Variable Gain for Microinverters in Microgrid,34th Chinese Control Conference (CCC),28-30 July,2015,pp: 7939-7944,Hangzhou,2015.

8.Optimal Microgrid Energy Management Integrating Intermittent Renewable Energy and Stochastic Load, 2015 IEEE Advanced Information Technology, Electronic and Automation Control Conference,December 19-20,2015, pp: 334-338, Chongqing,2015.

9.A Voltage Perturbation Control of VSI with Estimator in Weak Microgrid, Proceedings of the 2015 27th Chinese Control and Decision Conference (CCDC), 23-25 May 2015, pp:601-606, Qingdao, 2015.

10.A Multiple Vectors Voltage Waveform Modulation Method for Microgrid Inverter, The 5th Annual IEEE International Conference on CYBER Technology in Automation, Control and Intelligent Systems (IEEE-CYBER2015), 6-10 June 2015, pp:685-690, Shenyang, 2015.

11.A feed-forward Control Approach Using NeuralNetwork Observers for Single-phase inverter, The 11th World Congress on Intelligent Control and Automation (WCICA 2014), 2826-2831, 29 June-4July, 2014, Shenyang, 2014.

专利

1.基于SOC动态均衡子模块检索的分布式储能系统及控制方法,2019.9.29,中国发明专利,CN201910930669.3

2.一种大规模储能与永磁风力发电协调控制系统及方法,2019.5.22, 中国发明专利,CN201910427337.3

3.Intelligent Cooperative Control System and Method for Multi-unit Permanent Magnet Synchronous Motor,2019.1.1, USA, US10171020B2(美国发明专利)

4.一种基于虚拟同步技术的微电网不平衡负荷控制方法和装置,2018.9.4,中国发明专利, CN201810386374

5.一种基于微电网中分布式电源的精准调度方法,2018.9.4,中国发明专利,CN201810376013

6.一种微电网供电质量评估及其模拟负荷均衡控制系统及方法,2018.8.24,中国发明专利, CN201810297256

7.一种模块分离式风力发电机控制系统及方法,2017.9.8,中国发明专利,CN201710285067

8.一种带多直流子网的混合微电网系统及控制方法,2017.8.29,中国发明专利,CN201710337349

9.一种微电网数据驱动逆变器并联智能控制方法,2019.1.29,中国发明专利,CN201710285421

10.带决策器的光伏微电网逆变器同步控制装置及其控制方法, 2016.12.9.中国发明专利,CN201610573199.6

  

获奖

1.“专业思政+科教创新”驱动的电气自动化类教学体系探索和实践,中国自动化学会高等教育教学成果二等奖,2021.3

2.复杂配电网智能感知与优化控制关键技术及应用,中国仪器仪表学会科技进步一等奖,2021.8

3.An Intelligent Adaptive Control System for Modular PMSM, 获第31届匹兹堡国际发明展工业装备行业领域金奖(每个行业只设一个金奖),2016.6

4.Intelligent Cooperative Control System for A Novel Multi-module Permanent Magnet Synchronous Machine, 获第67届德国纽伦堡国际发明展金奖,2015.11

5.电气传动及控制系统的节能技术,辽宁省科技进步奖,一等奖,2011

6.高性能电气传动及控制系统的关键技术及应用,沈阳市科技进步奖,一等奖,2011

  

学术兼职

1.中国自动化学会会员

2.中国人工智能学会会员

3.IEEE会员

  

联系方式

办公室:信息楼102

电话:13804901173

邮箱:yanshijie@mail.neu.edu.cn