Hanlin Zhan
Papers
1
Total Citations
1
H-Index
1
About
Hanlin Zhan is a rising researcher in the field of advanced motor control and fault-tolerant drive systems, with a primary focus on dual three-phase permanent magnet synchronous motors (DTP-PMSMs) for robotics and industrial applications. His most cited work addresses a critical challenge in the operation of non-phase-shifted DTP-PMSMs under open-phase faults, proposing a novel control strategy that minimizes copper loss while reducing torque ripple. This contribution is particularly significant for high-reliability robotic joints, where uninterrupted, smooth operation is essential. By tackling the suppression of zero-sequence currents and optimizing fault-tolerant control, Zhan’s research enhances both the efficiency and robustness of electric drive systems. Though early in his career—with his top paper accumulating 1 citation as of 2025—his work represents a meaningful step toward more resilient and power-dense motor designs. Zhan’s research sits at the intersection of power electronics, control theory, and mechatronics, offering practical solutions for next-generation robotics and automation. His findings are especially relevant for engineers and researchers working on fault-tolerant actuation in safety-critical systems.
Research Focus
Key Achievements
Top Papers
- 1