Zhenyan Liang
Papers
2
Total Citations
81
H-Index
2
About
Zhenyan Liang is a leading researcher in advanced motor control and wireless power transfer, with a primary focus on multiphase electric drive systems and swarm robotics. Her most influential work, "Space-Vector-Optimized Predictive Control for Dual Three-Phase PMSM With Quick Current Response" (2021, 78 citations), introduces a novel model predictive control (MPC) scheme that optimizes space vectors to suppress current harmonics in dual three-phase permanent magnet synchronous machines (DTP-PMSMs) under low-inductance conditions. This contribution addresses a critical challenge in high-performance electric drives, enabling faster current response and improved efficiency for applications in electric vehicles and industrial automation. Liang also explores innovative energy solutions for robotics, as demonstrated in her work "Energy-encrypted contactless charging for swarm robots" (2017), which proposes a secure, bionic-inspired charging method to enhance autonomy and coordination in multi-robot systems. Her research bridges the gap between theoretical optimization and practical implementation, offering robust, low-cost solutions for complex electromechanical systems. With a growing citation impact, Liang’s work is shaping the future of intelligent motor control and energy management, making her a notable figure in power electronics and robotics engineering.
Research Focus
Key Achievements
Top Papers
- 1
- 2Energy-encrypted contactless charging for swarm robots3 citations · 2017