Tomohiro Yamazaki
Papers
2
Total Citations
45
H-Index
2
About
Tomohiro Yamazaki is a pioneering researcher in high-speed vision systems and their integration into industrial robotics and flexible manufacturing. His work centers on developing ultra-fast visual feedback control, enabling machines to perceive and react in real time—a critical advancement for precision automation. His most cited paper, "Dynamic compensation robot with a new high-speed vision system for flexible manufacturing" (2018, 42 citations), introduces a novel approach to compensating for dynamic disturbances in robotic operations, significantly enhancing adaptability and accuracy in production lines. Yamazaki also contributed to the design of a groundbreaking 1,000 fps 3D-stacked vision sensor (2017), which pushes the boundaries of visual sensing for industrial machinery and robots, though its impact is still emerging. His research bridges the gap between high-speed imaging and practical robotic control, offering solutions for tasks requiring rapid, precise adjustments. By combining hardware innovation with algorithmic efficiency, Yamazaki has laid foundational work for next-generation manufacturing systems, where vision-guided robots can operate with unprecedented speed and reliability.
Research Focus
Key Achievements
Top Papers
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