Arrow Research search

Author name cluster

Masayuki Ito

Possible papers associated with this exact author name in Arrow. This page groups case-insensitive exact name matches and is not a full identity disambiguation profile.

2 papers
1 author row

Possible papers

2

ICRA Conference 2018 Conference Paper

A Single-Planner Approach to Multi-Modal Humanoid Mobility

  • Andrew Dornbush
  • Karthik Vijayakumar
  • Sameer Bardapurkar
  • Fahad Islam 0002
  • Masayuki Ito
  • Maxim Likhachev

In this work, we present an approach to planning for humanoid mobility. Humanoid mobility is a challenging problem, as the configuration space for a humanoid robot is intractably large, especially if the robot is capable of performing many types of locomotion. For example, a humanoid robot may be able to perform such tasks as bipedal walking, crawling, and climbing. Our approach is to plan for all these tasks within a single search process. This allows the search to reason about all the capabilities of the robot at any point, and to derive the complete solution such that the plan is guaranteed to be feasible. A key observation is that we often can roughly decompose a mobility task into a sequence of smaller tasks, and focus planning efforts to reason over much smaller search spaces. To this end, we leverage the results of a recently developed framework for planning with adaptive dimensionality, and incorporate the capabilities of available controllers directly into the planning process. The resulting planner can also be run in an interleaved fashion alongside execution so that time spent idle is much reduced.

ICRA Conference 2008 Conference Paper

Bari-bari-II: Jack-up rescue robot with debris opening function

  • Hideyuki Tsukagoshi
  • Ato Kitagawa
  • Masayuki Ito
  • Kuniaki Ooe
  • Ichiro Kiryu
  • T. Kochiya

This paper proposes a novel type of rescue robot which is aimed to open narrow spaces, move under heavy debris, and search and save out survivors at disastrous site. Unlike most of the conventional mobile robots to move through opened spaces, the proposed robot has the ability of cultivating spaces by its own so as to be able to pass through. The key of the robot is the step structure on its head which enables it to open 10 mm gap up to 250 mm gradually under 600kg load by oil hydraulic power, synchronizing with the mobile behavior to go forward. Such kind of mobile method with jack-up function can be realized by switching two modes alternately discussed in this paper. The validity of the proposed design and behavior is experimentally verified by the developed model named Bari-bari-II.

v2026.09.13