Papers
4
Total Citations
37
H-Index
3
About
Yunze Li’s research bridges robotics, thermal management, and sustainable energy systems, with a focus on permanent magnet synchronous motors (PMSMs) and autonomous navigation. His most cited work (22 citations) introduces a hardware-in-loop method for temperature prediction and thermal boundary simulation in PMSMs, critical for industrial robots and electro-hydrostatic actuators in aircraft. This contribution enhances motor reliability and efficiency under demanding conditions. Li also explores energy sustainability, analyzing carbon emissions and energy demand for solar-driven mobile robots used as household heating and cooling systems (7 citations). In robotics, he advanced SLAM algorithms by integrating LIDAR and odometry with geometrical characteristic localization on two-wheeled self-balancing platforms (6 citations), improving robot autonomy in unfamiliar environments. His work on stator winding temperature estimation for PMSMs in electro-hydrostatic actuators (2 citations) further underscores his expertise in thermal protection for high-performance motors. Li’s research is notable for its interdisciplinary impact—combining motor thermal dynamics, energy-efficient robotics, and autonomous navigation—offering practical solutions for industrial automation and sustainable household technologies. His contributions are essential reading for researchers in mechatronics, thermal engineering, and mobile robotics.
Research Focus
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Top Papers
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