World's Best Scientists 2026 revealed!
Zhinong Wei

Zhinong Wei

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
45
Citations
6209
World Ranking
3625
National Ranking
576

Overview

Zhinong Wei is affiliated with Hohai University in China and specializes in engineering with a focus on electrical and electronic engineering, control and systems engineering, and artificial intelligence. Their research also covers renewable energy, sustainability, and energy engineering and power technology.

The scientist's work addresses key topics such as smart grid energy management, energy load and power forecasting, integrated energy systems optimization, solar radiation and photovoltaics, electric power system optimization, optimal power flow distribution, and microgrid control and optimization.

Frequent publication venues for their research include:

  • IEEE Transactions on Power Systems
  • IEEE Transactions on Sustainable Energy
  • Renewable Energy
  • Energy
  • Applied Energy

Zhinong Wei has collaborated extensively with co-authors including Guoqiang Sun, Haixiang Zang, Sheng Chen, Lilin Cheng, and Tao Ding.

Recent publications demonstrate a focus on forecasting, optimization, and integrated energy system resilience. Selected papers include:

  • Short-term global horizontal irradiance forecasting based on a hybrid CNN-LSTM model with spatiotemporal correlations (2020, Renewable Energy)
  • Residential load forecasting based on LSTM fusing self-attention mechanism with pooling (2021, Energy)
  • A Transformer-based multimodal-learning framework using sky images for ultra-short-term solar irradiance forecasting (2023, Applied Energy)
  • Distributionally Robust Resilient Operation of Integrated Energy Systems Using Moment and Wasserstein Metric for Contingencies (2021, IEEE Transactions on Power Systems)
  • Multi-Meteorological-Factor-Based Graph Modeling for Photovoltaic Power Forecasting (2021, IEEE Transactions on Sustainable Energy)

Best Publications

  • Day-ahead photovoltaic power forecasting approach based on deep convolutional neural networks and meta learning

    Haixiang Zang;Lilin Cheng;Tao Ding;Kwok W. Cheung

  • Hybrid method for short-term photovoltaic power forecasting based on deep convolutional neural network

    Haixiang Zang;Lilin Cheng;Tao Ding;Kwok W. Cheung

  • Direct-Current Predictive Control Strategy for Inhibiting Commutation Failure in HVDC Converter

    Zhinong Wei;Yang Yuan;Xiao Lei;Huawei Wang

  • Residential load forecasting based on LSTM fusing self-attention mechanism with pooling

    Haixiang Zang;Ruiqi Xu;Lilin Cheng;Tao Ding

  • A robust optimization approach for integrated community energy system in energy and ancillary service markets

    Yizhou Zhou;Zhinong Wei;Guoqiang Sun;Kwok W. Cheung

  • Multi-Linear Probabilistic Energy Flow Analysis of Integrated Electrical and Natural-Gas Systems

    Sheng Chen;Zhinong Wei;Guoqiang Sun;Kwok W. Cheung

  • Optimal Power and Semi-Dynamic Traffic Flow in Urban Electrified Transportation Networks

    Si Lv;Zhinong Wei;Guoqiang Sun;Sheng Chen

  • A Carbon Price Forecasting Model Based on Variational Mode Decomposition and Spiking Neural Networks

    Guoqiang Sun;Tong Chen;Zhinong Wei;Yonghui Sun

  • Unit Commitment With an Enhanced Natural Gas-Flow Model

    Sheng Chen;Antonio J. Conejo;Ramteen Sioshansi;Zhinong Wei

  • Distributionally Robust Unit Commitment in Coordinated Electricity and District Heating Networks

    Yizhou Zhou;Mohammad Shahidehpour;Zhinong Wei;Zhiyi Li

  • Convex Hull Based Robust Security Region for Electricity-Gas Integrated Energy Systems

    Sheng Chen;Zhinong Wei;Guoqiang Sun;Wei Wei

  • Distributionally Robust Resilient Operation of Integrated Energy Systems Using Moment and Wasserstein Metric for Contingencies

    Yizhou Zhou;Zhinong Wei;Mohammad Shahidehpour;Sheng Chen

  • Adaptive Robust Day-Ahead Dispatch for Urban Energy Systems

    Sheng Chen;Zhinong Wei;Guoqiang Sun;Kwok W. Cheung

  • Resilience-oriented planning of integrated electricity and heat systems: A stochastic distributionally robust optimization approach

    Unknown

  • Multi-period integrated natural gas and electric power system probabilistic optimal power flow incorporating power-to-gas units

    Guoqiang Sun;Shuang Chen;Zhinong Wei;Sheng Chen

  • Robust H U+221E load frequency control of multi-area power system with time delay: a sliding mode control approach

    Yonghui Sun;Yingxuan Wang;Zhinong Wei;Guoqiang Sun

  • Multi-Meteorological-Factor-Based Graph Modeling for Photovoltaic Power Forecasting

    Lilin Cheng;Haixiang Zang;Tao Ding;Zhinong Wei

  • Ensemble Recurrent Neural Network Based Probabilistic Wind Speed Forecasting Approach

    Lilin Cheng;Haixiang Zang;Tao Ding;Rong Sun

  • Conjectural-Variations Equilibria in Electricity, Natural-Gas, and Carbon-Emission Markets

    Sheng Chen;Antonio J. Conejo;Zhinong Wei

  • Distributionally Robust Co-Optimization of Energy and Reserve for Combined Distribution Networks of Power and District Heating

    Yizhou Zhou;Mohammad Shahidehpour;Zhinong Wei;Zhiyi Li

  • Integrated demand response for congestion alleviation in coupled power and transportation networks

    Si Lv;Zhinong Wei;Sheng Chen;Guoqiang Sun

  • Estimation and validation of daily global solar radiation by day of the year-based models for different climates in China

    Haixiang Zang;Lilin Cheng;Tao Ding;Kwok W. Cheung

Frequent Co-Authors

Mohammad Shahidehpour
Mohammad Shahidehpour Illinois Institute of Technology
Ramteen Sioshansi
Ramteen Sioshansi Carnegie Mellon University
Ping Ju
Ping Ju Hohai University
Junbo Zhao
Junbo Zhao University of Connecticut
Fangxing Li
Fangxing Li University of Tennessee at Knoxville
Yan Xu
Yan Xu Nanyang Technological University
Ferdinanda Ponci
Ferdinanda Ponci RWTH Aachen University
Simon X. Yang
Simon X. Yang University of Guelph
Jinde Cao
Jinde Cao Southeast University
Rabih A. Jabr
Rabih A. Jabr American University of Beirut

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

For those interested in studying Electronics and Electrical Engineering, exploring related online degrees can open up diverse career opportunities. Many students seek accelerated options to balance education with professional goals. The quickest online project management degree programs provide a fast track to leadership roles, equipping graduates with skills to oversee technical projects efficiently.

Complementing a technical background with a bachelor's degree in project management is increasingly popular. This degree helps aspiring engineers enhance their organizational abilities and prepare for interdisciplinary roles involving team coordination and resource management.

Working adults can take advantage of bachelor degree programs for working adults, which offer flexible scheduling and online classes. These programs make it possible to continue advancing education without interrupting careers in fast-evolving engineering fields.

Additionally, pursuing an instructional design degree online provides valuable skills in creating educational technology and training materials. This pathway can lead to roles focused on developing learning tools specifically tailored for technical subjects like electronics and electrical engineering.

Best Scientists Citing Zhinong Wei

Trending Scientists

Recently Published Articles