Dinh Hoa Nguyen
Also known as: D. H. Nguyen
Hanoi University of Science and Technology, Kyushu University, University of Tokyo, Chulalongkorn University, International Institute for Carbon-Neutral Energy Research, Kyushu University
About
Dinh Hoa Nguyen received the B.S. degree from Hanoi University of Technology in 2007, the M.Eng. degree from Chulalongkorn University in 2009, and the Ph.D. degree from the University of Tokyo in 2014. He was a Tenured Associate Professor in the International Institute for Carbon-Neutral Energy Research (WPI-I2CNER) and Institute of Mathematics for Industry (IMI), Kyushu University, Japan, until 9/2025. Currently, he is with Department of Automation Engineering, School of Electrical and Electronic Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam.
His research interests include integration of renewables and distributed energy resources, smart grid and energy systems, multi-agent systems and cooperative control, distributed optimization and control, artificial intelligent, iterative learning control, and robust and optimal control.
He is a Senior Member of IEEE.
Employment
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Hanoi University of Science and Technology2025 - Present
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Kyushu University Associate Professor2021 - 2025
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International Institute for Carbon-Neutral Energy Research, Kyushu University Assistant Professor2016 - 2021
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Toyota Technological Institute Postdoctoral Research Fellow2015 - 2016
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Hanoi University of Science and Technology Lecturer2007 - 2015
Education
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University of Tokyo PhD2010 - 2013
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Chulalongkorn University M.Eng2007 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (67)
- Admittance-based Ollivier-Ricci curvature for power grid structural robustness analysis Save
- Flexible Solar Panel Recognition Using Deep Learning Save
- Iterative Learning Control Design for Iteration-Varying State-of-Charge Profiles of Electric Vehicle Batteries Save
- Analysis of Optima Set in A Class of Non-Convex Geometric Optimization Problems Using Bifurcation Theory Save
- A Multi-Agent Framework for P2P Energy Trading With EV Aggregators Supporting V2X Services Save
- Distributed Dual Subgradient Methods with Averaging and Applications to Grid Optimization Save
- A Moving-Horizon Dynamic Mode Decomposition Method for Daily Residential Electric Consumption Prediction Save
- Model Predictive Iterative Learning Control Design for Battery Optimal Electro-Thermal Management Under Daily-Variant State-of-Charge Patterns Save
- Water Tanks as Lenses for Optical Wireless Power Transfer Save
- Stability Assessment of Microalgal Photobioreactors for Carbon Dioxide Capture under Dilution Rate Constraints Save