Zhongyu Dai
Papers
4
Total Citations
9
H-Index
2
About
Zhongyu Dai is an emerging researcher specializing in wireless power transfer (WPT) systems and intelligent robotics, with a particular focus on advancing the efficiency and versatility of omnidirectional energy transmission technologies. His most significant contributions lie in the design and optimization of omnidirectional wireless power transfer (OWPT) systems, which have broad applications in consumer electronics, industrial robots, medical devices, and unmanned detection equipment. Dai's work on regional coupling-enhanced self-decoupling OWPT transmitters addresses critical challenges in transmission efficiency and electromagnetic leakage, representing a meaningful step forward in practical WPT deployment. His research into dual-frequency power distribution methods further expands the applicability of OWPT systems by accommodating devices with diverse power and frequency requirements. Additionally, Dai has explored hybrid wireless power transfer combining inductive and capacitive coupling through integrated coil designs, demonstrating a creative systems-level approach to compact coupler architecture. Beyond wireless energy, his work on navigation assistance for substation inspection robots highlights a complementary interest in intelligent infrastructure and autonomous systems. Though early in his career with a growing citation record, Dai's interdisciplinary contributions position him as a promising voice in next-generation wireless energy and robotics research.
Research Focus
Key Achievements
Top Papers
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