Shota Komatsuzaki
Papers
2
Total Citations
10
H-Index
2
About
Shota Komatsuzaki is an emerging researcher in the field of precision sensing and magnetic encoder technology, with a focus on advancing position measurement for industrial machines and robotics. His work centers on developing innovative methods for absolute angle calculation in magnetic encoders, addressing critical challenges in high-precision motor control. In his most cited paper (2021, 8 citations), Komatsuzaki introduced a novel approach based on magnetic flux density difference, offering improvements in environmental resistance and cost-effectiveness compared to traditional potentiometers. His subsequent research (2021, 2 citations) explores the use of eccentric structures combined with Long Short-Term Memory (LSTM) neural networks to solve the problem of absolute angle loss in multi-pole magnet systems—a key hurdle for achieving high-resolution robot control. While his citation counts are modest, reflecting an early-career stage, Komatsuzaki’s work demonstrates a clear trajectory toward integrating machine learning with sensor design. His contributions are particularly relevant for researchers and engineers working on next-generation industrial automation, where encoder accuracy directly impacts robotic precision and reliability.
Research Focus
Key Achievements
Top Papers
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- 2