Azusa Amino
Hitachi
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Featured researches published by Azusa Amino.
international conference on robotics and automation | 2017
Ryosuke Nakamura; Azusa Amino
A wheeled inverted pendulum cannot balance without control, and it is important to save motion in a control range. In some situations, however, to avoid a collision, the maximum acceleration and deceleration must be applied. A motion-planning method for a wheeled inverted pendulum (“body” hereafter)-which uses full performance from all attitudes under hardware constraints-was developed. The developed method involves two steps. First, a linear combination of zeroth to fourth differentials of parameters based on the motion equation of a wheeled inverted pendulum is obtained. Second, the arbitrary attitude of the wheeled inverted pendulum and hardware constraints are expressed on a phase plane containing angular rate of body motion and an angular inclination of the body. By executing these two steps, a motion plan can be expressed on the phase plane. A simulation based on a model confirmed that the movement plan formulated by this technique can be followed with no error.
Archive | 2008
Azusa Amino; Junichi Tamamoto; Ryosuke Nakamura
Archive | 2012
Makoto Hattori; 誠 服部; Azusa Amino; 梓 網野; Junichi Tamamoto; 淳一 玉本; Koichi Kurosawa; 孝一 黒澤; Kenichi Otani; 健一 大谷
Archive | 2011
Ryosuke Nakamura; Azusa Amino; Taishi Ueda
Archive | 2010
Ryosuke Nakamura; Azusa Amino
Journal of the Society of Mechanical Engineers, Japan | 2009
Masashi Koga; Manabu Yanagimoto; Ryosuke Nakamura; Azusa Amino
Archive | 2006
Azusa Amino; Ryosuke Nakamura; Junichi Tamamoto; 亮介 中村; 淳一 玉本; 梓 網野
Archive | 2012
Taishi Ueda; Ryosuke Nakamura; Azusa Amino
Archive | 2012
徳山 幹夫; Mikio Tokuyama; 山本 健次郎; Kenjiro Yamamoto; 太紀 飯村; Taiki Iimura; 梓 網野; Azusa Amino
Journal of the Robotics Society of Japan | 2012
Yoshitaka Hara; Akira Oshima; Yukihiko Ono; Azusa Amino; Kenjiro Yamamoto