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Engineering and Technology

D-Index
62
Citations
12619
World Ranking
1931
National Ranking
390

Overview

Wei Gu is affiliated with Philips (China) and has a focus in Engineering, particularly within Electrical and Electronic Engineering, Control and Systems Engineering, and Energy Engineering and Power Technology. Their research spans several interconnected fields related to energy systems and power technology.

Their body of published work includes a significant number of contributions to the following topics:

  • Integrated Energy Systems Optimization
  • Optimal Power Flow Distribution
  • Smart Grid Energy Management
  • Electric Power System Optimization
  • Microgrid Control and Optimization
  • Hybrid Renewable Energy Systems
  • Power System Optimization and Stability

Frequent publication venues where Wei Gu's research appears include:

  • IEEE Transactions on Smart Grid
  • IEEE Transactions on Power Systems
  • IEEE Transactions on Sustainable Energy
  • Applied Energy
  • International Journal of Electrical Power & Energy Systems

Some of their notable recent papers encompass:

  • "Optimal Planning for Electricity-Hydrogen Integrated Energy System Considering Power to Hydrogen and Heat and Seasonal Storage," 2020, IEEE Transactions on Sustainable Energy
  • "Bi-level mixed-integer planning for electricity-hydrogen integrated energy system considering levelized cost of hydrogen," 2020, Applied Energy
  • "Feasibility analysis of utilising underground hydrogen storage facilities in integrated energy system: Case studies in China," 2020, Applied Energy
  • "Combined heat and power system intelligent economic dispatch: A deep reinforcement learning approach," 2020, International Journal of Electrical Power & Energy Systems
  • "Aggregate Operation Model for Numerous Small-Capacity Distributed Energy Resources Considering Uncertainty," 2021, IEEE Transactions on Smart Grid

Wei Gu frequently collaborates with several co-authors, most notably:

  • Shuai Lu
  • Zhi Wu
  • Suyang Zhou
  • Haifeng Qiu
  • Yijun Xu

The range of Wei Gu's research predominantly concentrates on optimization and control within energy systems, often focusing on integrated and distributed energy resources as well as smart grid management and power flow distribution. Their interdisciplinary approach touches on advanced control methods, artificial intelligence applications, and energy storage solutions within power and energy technologies.

Best Publications

  • Modeling, planning and optimal energy management of combined cooling, heating and power microgrid: A review

    Wei Gu;Zhi Wu;Rui Bo;Wei Liu

  • Optimal Planning for Electricity-Hydrogen Integrated Energy System Considering Power to Hydrogen and Heat and Seasonal Storage

    Guangsheng Pan;Wei Gu;Yuping Lu;Haifeng Qiu

  • Optimal operation for integrated energy system considering thermal inertia of district heating network and buildings

    Wei Gu;Jun Wang;Shuai Lu;Zhao Luo

  • Analysis and Comparison of Medium Voltage High Power DC/DC Converters for Offshore Wind Energy Systems

    Wu Chen;Alex Q. Huang;Chushan Li;Gangyao Wang

  • An Online Optimal Dispatch Schedule for CCHP Microgrids Based on Model Predictive Control

    Wei Gu;Zhihe Wang;Zhi Wu;Zhao Luo

  • Decentralized Multi-Agent System-Based Cooperative Frequency Control for Autonomous Microgrids With Communication Constraints

    Wei Liu;Wei Gu;Wanxing Sheng;Xiaoli Meng

  • An online optimal dispatch schedule for CCHP microgrids based on model predictive control

    Wei Gu;Zhihe Wang;Zhi Wu;Zhao Luo

  • Distributed MPC-based secondary voltage control scheme for autonomous droop-controlled microgrids

    Guannan Lou;Wei Gu;Yinliang Xu;Ming Cheng

  • Optimal planning of electric vehicle charging stations comprising multi-types of charging facilities

    Lizi Luo;Wei Gu;Suyang Zhou;He Huang

  • Distributed MPC-Based Secondary Voltage Control Scheme for Autonomous Droop-Controlled Microgrids

    Guannan Lou;Wei Gu;Yinliang Xu;Ming Cheng

  • Optimal Distributed Control for Secondary Frequency and Voltage Regulation in an Islanded Microgrid

    Yinliang Xu;Hongbin Sun;Wei Gu;Yan Xu

  • A Multi-Time-Scale Economic Scheduling Strategy for Virtual Power Plant Based on Deferrable Loads Aggregation and Disaggregation

    Zhongkai Yi;Yinliang Xu;Wei Gu;Wenchuan Wu

  • Artificial intelligence based smart energy community management: A reinforcement learning approach

    Suyang Zhou;Zijian Hu;Wei Gu;Meng Jiang

  • Combined Economic Dispatch Considering the Time-Delay of District Heating Network and Multi-Regional Indoor Temperature Control

    Chenyu Wu;Wei Gu;Ping Jiang;Zhenyuan Li

  • A two-stage optimization and control for CCHP microgrid energy management

    Zhao Luo;Zhi Wu;Zhenyuan Li;HongYi Cai

  • Bi-Level Two-Stage Robust Optimal Scheduling for AC/DC Hybrid Multi-Microgrids

    Haifeng Qiu;Bo Zhao;Wei Gu;Rui Bo

  • Bi-level mixed-integer planning for electricity-hydrogen integrated energy system considering levelized cost of hydrogen

    Guangsheng Pan;Wei Gu;Haifeng Qiu;Yuping Lu

  • Optimal siting and sizing of distributed generation in distribution systems with PV solar farm utilized as STATCOM (PV-STATCOM)

    Lizi Luo;Lizi Luo;Wei Gu;Xiao-Ping Zhang;Ge Cao

  • Wireless Input-Voltage-Sharing Control Strategy for Input-Series Output-Parallel (ISOP) System Based on Positive Output-Voltage Gradient Method

    Wu Chen;Guangjiang Wang;Xinbo Ruan;Wei Jiang

  • Feasibility analysis of utilising underground hydrogen storage facilities in integrated energy system: Case studies in China

    Yue Qiu;Suyang Zhou;Jihua Wang;Jun Chou

  • Microgrid economic optimal operation of the combined heat and power system with renewable energy

    W. Gu;Z. Wu;X. Yuan

  • Combined heat and power system intelligent economic dispatch : a deep reinforcement learning approach

    Suyang Zhou;Zijian Hu;Wei Gu;Meng Jiang

  • Aggregate Operation Model for Numerous Small-Capacity Distributed Energy Resources Considering Uncertainty

    Zhongkai Yi;Yinliang Xu;Wei Gu;Lun Yang

  • Robust Optimal Dispatch of AC/DC Hybrid Microgrids Considering Generation and Load Uncertainties and Energy Storage Loss

    Bo Zhao;Haifeng Qiu;Ruwen Qin;Xuesong Zhang

  • Economic optimal schedule of CHP microgrid system using chance constrained programming and particle swarm optimization

    Z. Wu;W. Gu;R. Wang;X. Yuan

Frequent Co-Authors

Yinliang Xu
Yinliang Xu Tsinghua University
Hongbin Sun
Hongbin Sun Tsinghua University
Rui Bo
Rui Bo Missouri University of Science and Technology
Tao Ding
Tao Ding Xi'an Jiaotong University
Ke Meng
Ke Meng University of New South Wales
Zhao Yang Dong
Zhao Yang Dong City University of Hong Kong
Xiao-Ping Zhang
Xiao-Ping Zhang University of Birmingham
Campbell Booth
Campbell Booth University of Strathclyde
Meng Jiang
Meng Jiang University of Notre Dame
Jing Zhu
Jing Zhu Tsinghua University

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