Zobrazeno 1 - 10
of 16
pro vyhledávání: '"Naohiro Shimaji"'
Autor:
Kiri Yoshida, Kenta Kojima, Tadahiro Hasegawa, Shin'ichi Yuta, Kentaro Nimura, Satoko Abiko, Naohiro Shimaji
Publikováno v:
Journal of the Robotics Society of Japan. 39:759-762
Autor:
Wataru Kunishi, Susumu Noda, Kentaro Nishimura, Takuya Inoue, Kyoko Kitamura, Naohiro Shimaji, Kenji Ishizaki, Masahiro Yoshida, Menaka De Zoysa
Publikováno v:
AI and Optical Data Sciences II.
We report on photonic crystal lasers (PCSELs) with high power and high beam quality. The PCSELs have been developed with AI-assisted technologies. The developed devices with a 500µm diameter successfully oscillated with a high, 10W-class peak output
Publikováno v:
ROBIO
This paper addresses semi-autonomous collision avoidance flight using two dimensional laser range finder with mirrors. One of practical applications of unmanned aerial vehicles (UAV s) can be found in inspection of deteriorated infrastructures such a
Autor:
Naohiro Shimaji
Publikováno v:
Journal of the Robotics Society of Japan. 34:659-662
Publikováno v:
Journal of Robotics and Mechatronics. 27:64-73
Uniaxial laser rangefinder To expand the range of activities by unmanned aerial vehicles (UAVs), whose use at disaster sites and other dangerous locations has raised high expectations, UAVs must be capable of several functions, e.g., flight both indo
Development of constant altitude flight system using two dimensional laser range finder with mirrors
Publikováno v:
AIM
This paper proposes a constant altitude flight system using two dimensional laser range finder with mirrors. Recently, unmanned aerial vehicles (UAVs) are expected to perform in the inspection of deteriorated infrastructures such as bridges and tunne
Autor:
Kensuke Murai, Naohiro Shimaji
Publikováno v:
The Review of Laser Engineering. 47:617
Publikováno v:
Journal of the Robotics Society of Japan. 23:181-184
Publikováno v:
The Proceedings of JSME annual Conference on Robotics and Mechatronics (Robomec). 2018:1A1-A10
Publikováno v:
ROBIO
The purpose of the present study is to develop a person counting system using a 3D laser scanner. The system consists of a person-detection component, a tracking component, and a counting component. The person-detection component detects human bodies