Welcome to ReGENT!
We conducts research on power‑electronic‑dominated energy systems, with a focus on smart grids and microgrids, advanced power conversion, and grid‑connected control. Our work combines modeling, control, and hardware validation to support reliable integration of renewable energy, energy storage, and electrified transportation. We collaborate with academic and industrial partners and support graduate training through research projects, publications, and international exchange.
Research Areas
Smart Grids & Microgrids
Hierarchical control, energy management, and resilience modeling for microgrids
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Inverter‑Dominated Stability & Grid‑Forming Control
Advanced control (GFM/GFL) and analysis of impedance interactions in inverter-dominated networks
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Converter Topologies
Researching switched-capacitor, differential, and multi-port converter designs
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Electrified Transportation & Charging Interfaces
Optimizing traction drives, charging interfaces, and grid interaction for e-mobility
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Power & Information Transfer
Dual-purpose modulation for power-line and wireless information transfer
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Reliability, Diagnostics, and Power Quality
Enhancing power quality, fault tolerance, and predicting capacitor lifetime
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Selected Publications
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Decoupled Space Vector Modulation Model and Maximum Modulation Index Analysis for Nine-Switch Converters
IEEE Transactions on Power Electronics, 2026
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Dual Phase-Shift Symmetrical SVM Strategy Optimized by Dual Modulation Indices for Single-Stage Isolated DC–AC Matrix Converter
IEEE Transactions on Power Electronics, 2026
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Analysis and Optimization of Wireless Power and Information Dual Transfer in Multicoil System
IEEE Transactions on Power Electronics, 2026
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Space Vector Modulation for Three Phase Three-Load Twelve-Switch Inverters
2025 IEEE 3rd International Power Electronics and Application Symposium (PEAS)
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A Unified Power Decoupling Control Strategy for Single-Phase Differential Boost/Buck-Boost Inverter
2025 IEEE 3rd International Power Electronics and Application Symposium (PEAS)
Featured Projects
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Developing a Multi-Model Approach for Optimizing Networked Microgrids in Localized Energy Networks for Grid Decarbonization
Natural Science Foundation of China (NSFC)
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A Self-Organized New Energy Power Generation Clusters
South Africa - China Joint Research Programme
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Application Technologies and Engineering Demonstration of Novel Equipment for Provincial Power Systems with Ultra-High Shares of Renewable Energy
Ministry of Science and Technology, National Science and Technology Major Project