Tetsuya Ojiro
Papers
1
Total Citations
2
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About
Tetsuya Ojiro has made significant contributions to precision motion control, with a primary focus on vibration suppression and high-speed positioning systems for industrial applications. His work centers on developing advanced control strategies for table positioning systems used in semiconductor manufacturing and robotics, where nanometer-level accuracy and rapid response are critical. Ojiro's most notable research addresses the challenge of vibration in full-closed feedback control systems, proposing a nonlinear observer-based compensator that effectively mitigates mechanical resonance while maintaining system stability. This approach represents an important advancement over conventional proportional and proportional-integral control methods, enabling faster settling times and improved tracking performance in precision machinery. His 2013 paper on this topic has garnered attention from researchers in the field, and his work continues to influence the design of high-performance positioning systems. Ojiro's research bridges theoretical control engineering with practical industrial requirements, making his contributions valuable for both academic researchers developing next-generation motion control algorithms and engineers seeking to enhance the throughput and accuracy of automated manufacturing equipment.
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Top Papers
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