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Electronics and Electrical Engineering
Denmark
2026

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
99
Citations
41720
World Ranking
191
National Ranking
4

Research.com Recognitions

  • 2026 - Research.com Electronics and Electrical Engineering in Denmark Leader Award
  • 2025 - Research.com Electronics and Electrical Engineering in Denmark Leader Award
  • 2023 - Research.com Electronics and Electrical Engineering in Denmark Leader Award
  • 2022 - Research.com Electronics and Electrical Engineering in Denmark Leader Award

Overview

Zhe Chen is affiliated with Aalborg University in Denmark and specializes in engineering, with a focus on electrical and electronic engineering and control and systems engineering. Their research extends into mechanical engineering, energy engineering and power technology, and artificial intelligence.

Their primary research topics encompass a range of areas within energy systems and power engineering, including:

  • Microgrid Control and Optimization
  • Smart Grid Energy Management
  • HVDC Systems and Fault Protection
  • Integrated Energy Systems Optimization
  • Optimal Power Flow Distribution
  • Energy Load and Power Forecasting
  • Multilevel Inverters and Converters

Zhe Chen has contributed to various scientific publication venues, with frequent publications in:

  • Applied Energy
  • Energy
  • IEEE Transactions on Power Systems
  • International Journal of Electrical Power & Energy Systems
  • Renewable Energy

Their recent scholarly articles include:

  • "Integrated Task Assignment and Path Planning for Capacitated Multi-Agent Pickup and Delivery," published in 2021 in IEEE Robotics and Automation Letters
  • "Reinforcement Learning and Its Applications in Modern Power and Energy Systems: A Review," published in 2020 in Journal of Modern Power Systems and Clean Energy
  • "Modeling and optimization of combined heat and power with power-to-gas and carbon capture system in integrated energy system," published in 2021 in Energy
  • "A Multi-Agent Deep Reinforcement Learning Based Voltage Regulation Using Coordinated PV Inverters," published in 2020 in IEEE Transactions on Power Systems
  • "Data-Driven Multi-Agent Deep Reinforcement Learning for Distribution System Decentralized Voltage Control With High Penetration of PVs," published in 2021 in IEEE Transactions on Smart Grid

The scientist has collaborated frequently with several coauthors, notably:

  • Weihao Hu
  • Di Cao
  • Frede Blaabjerg
  • Qi Huang
  • Yanbo Wang

Best Publications

  • Power Electronics as Efficient Interface in Dispersed Power Generation Systems

    Frede Blaabjerg;Zhe Chen;Søren Bækhøj Kjær

  • A Review of the State of the Art of Power Electronics for Wind Turbines

    Zhe Chen;J.M. Guerrero;F. Blaabjerg

  • Overview of different wind generator systems and their comparisons

    H. Li;Zhe Chen

  • Grid Power Quality with Variable-Speed Wind Turbines

    Z. Chen;E. Spooner

  • A Simple Adaptive Overcurrent Protection of Distribution Systems With Distributed Generation

    P. Mahat;Zhe Chen;Birgitte Bak-Jensen;C. L. Bak

  • Multiple-Complex Coefficient-Filter-Based Phase-Locked Loop and Synchronization Technique for Three-Phase Grid-Interfaced Converters in Distributed Utility Networks

    Xiaoqiang Guo;Weiyang Wu;Zhe Chen

  • Review of islanding detection methods for distributed generation

    P. Mahat;Zhe Chen;B. Bak-Jensen

  • ARIMA-Based Time Series Model of Stochastic Wind Power Generation

    Peiyuan Chen;Troels Pedersen;Birgitte Bak-Jensen;Zhe Chen

  • An Active Damper for Stabilizing Power-Electronics-Based AC Systems

    Xiongfei Wang;Frede Blaabjerg;Marco Liserre;Zhe Chen

  • An Improved Control Strategy of Limiting the DC-Link Voltage Fluctuation for a Doubly Fed Induction Wind Generator

    Jun Yao;Hui Li;Yong Liao;Zhe Chen

  • Flicker study on variable speed wind turbines with doubly fed induction generators

    Tao Sun;Zhe Chen;F. Blaabjerg

  • Power Electronics for Modern Wind Turbines

    Frede Blaabjerg;Zhe Chen;Jerry Hudgins

  • Reinforcement Learning and Its Applications in Modern Power and Energy Systems: A Review

    Di Cao;Weihao Hu;Junbo Zhao;Guozhou Zhang

  • A Control Method for Voltage Balancing in Modular Multilevel Converters

    Fujin Deng;Zhe Chen

  • Dynamic Optimal Energy Flow in the Integrated Natural Gas and Electrical Power Systems

    Jiakun Fang;Qing Zeng;Xiaomeng Ai;Zhe Chen

  • A hybrid islanding detection technique using average rate of voltage change and real power shift

    Pukar Mahat;Zhe Chen;Birgitte Bak-Jensen

  • Optimization of Multibrid Permanent-Magnet Wind Generator Systems

    Hui Li;Zhe Chen;H. Polinder

  • Optimized sizing of a standalone PV-wind-hydropower station with pumped-storage installation hybrid energy system

    Xiao Xu;Weihao Hu;Di Cao;Qi Huang

  • Steady-state analysis of the integrated natural gas and electric power system with bi-directional energy conversion

    Qing Zeng;Jiakun Fang;Jinghua Li;Jinghua Li;Zhe Chen

  • Pitch angle control for variable speed wind turbines

    Jianzhong Zhang;Ming Cheng;Zhe Chen;Xiaofan Fu

  • Probabilistic load flow: A review

    P. Chen;Z. Chen;B. Bak-Jensen

  • Power Electronics in Renewable Energy Systems

    F. Blaabjerg;F. Iov;R. Teodorescu;Z. Chen

Frequent Co-Authors

Frede Blaabjerg
Frede Blaabjerg Aalborg University
Fujin Deng
Fujin Deng Southeast University
Xiongfei Wang
Xiongfei Wang Royal Institute of Technology
Ming Cheng
Ming Cheng Southeast University
Jiakun Fang
Jiakun Fang Huazhong University of Science and Technology
Claus Leth Bak
Claus Leth Bak Aalborg University
Simon Haykin
Simon Haykin McMaster University
Jinyu Wen
Jinyu Wen Huazhong University of Science and Technology
Xiaomeng Ai
Xiaomeng Ai Huazhong University of Science and Technology
Wei-Jen Lee
Wei-Jen Lee The University of Texas at Arlington

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