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.
Hierarchical control, energy management, and resilience modeling for microgrids
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Advanced control (GFM/GFL) and analysis of impedance interactions in inverter-dominated networks
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Researching switched-capacitor, differential, and multi-port converter designs
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Optimizing traction drives, charging interfaces, and grid interaction for e-mobility
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Dual-purpose modulation for power-line and wireless information transfer
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Enhancing power quality, fault tolerance, and predicting capacitor lifetime
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