Ryota Miyake
Papers
2
Total Citations
4
H-Index
2
About
Ryota Miyake is a researcher focused on advancing acoustic sensing and imaging technologies for practical human-machine interaction. His key research areas include acoustic imaging, beamforming, and distance measurement methods using phase interference—work that directly supports the development of hands-free speech interfaces and nursing-care robots. Miyake’s major contribution lies in his study of acoustic imaging based on beamformer to range spectra, a technique that improves the accuracy of distance estimation by analyzing reflected wave patterns without relying solely on traditional time-of-flight methods. This approach is critical for enabling robots and voice-controlled systems to perceive their environment more reliably. Although his most-cited paper has garnered 2 citations, it addresses a foundational challenge in acoustic sensing: obtaining precise distance information to targets for real-world applications. His work represents an important step toward more intuitive and autonomous assistive technologies, bridging the gap between signal processing theory and robotic perception. Miyake’s research continues to influence the design of smarter, more responsive acoustic interfaces in healthcare and domestic robotics.
Research Focus
Key Achievements
Top Papers
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- 2