Hiroto Suzuki
Papers
3
Total Citations
40
H-Index
3
About
Hiroto Suzuki is a leading researcher in humanoid robotics, specializing in torque-based control systems for gear-driven robots. His work centers on enabling sensorless torque estimation and low-latency variable stiffness control, which allows humanoid robots to achieve both high power and flexibility—critical for dynamic locomotion and disturbance rejection. His most cited paper (28 citations) introduces a distributed torque estimation method that eliminates the need for joint torque sensors, achieving fully variable stiffness with minimal feedback latency. This foundational work is extended in his subsequent studies on stabilization control (8 citations) and bipedal walking (4 citations), where he demonstrates how sensorless torque control can prevent falls from impulsive disturbances. Suzuki’s key contribution lies in bridging the gap between rigid gear-driven actuation and compliant, human-like motion, enabling robots to absorb shocks and maintain balance in real-world environments. His research has direct implications for disaster response and assistive robotics, where robust, instantaneous force control is essential. Through his high-performance real-time distributed systems, Suzuki continues to push the boundaries of torque-controlled humanoid locomotion.
Research Focus
Key Achievements
Top Papers
- 1
- 2Torque based stabilization control for torque sensorless humanoid robots8 citations · 2017
- 3