Yamashina Kazushi
Papers
5
Total Citations
78
H-Index
5
About
Kazushi Yamashina is a researcher specializing in embedded systems, FPGA-based computing, and robotic system integration, with a particular focus on bridging the gap between hardware acceleration and robot software frameworks. His most significant contribution is the development of cReComp, an automated design tool that generates ROS-compliant FPGA components, dramatically reducing the traditionally high development costs associated with integrating FPGAs into robotic systems. First introduced in 2015 and refined through subsequent work, this framework has enabled roboticists to harness FPGA power efficiency without requiring deep hardware expertise — a longstanding barrier in the field. Yamashina's research addresses a critical challenge in autonomous mobile robotics: delivering high-performance computation for sensing, image processing, and actuation under strict power constraints. His component-oriented FPGA design platform, explored across multiple publications, also incorporates architecture exploration methodologies that balance local FPGA resources with remote computing. His most cited work, "cReComp" (2016, 27 citations), demonstrates his influence in this niche but growing area, with cumulative citations across his top papers exceeding 75. For students and researchers working at the intersection of robotics middleware and reconfigurable hardware, Yamashina's body of work represents a foundational reference for low-power, high-performance robot system design.
Research Focus
Key Achievements
Top Papers
- 1cReComp: Automated Design Tool for ROS-Compliant FPGA Component27 citations · 2016
- 2FPGA Components for Integrating FPGAs into Robot Systems19 citations · 2018
- 3Proposal of ROS-compliant FPGA Component for Low-Power Robotic Systems14 citations · 2015
- 4
- 5Automatic Generation Tool of FPGA Components for Robots5 citations · 2019