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Taisuke Kobayashi

9 accepted papers

2024

Real-Time Spatiotemporal Assistance for Micromanipulation Using Imitation Learning

RA-L 2024

There has been an increasing demand for microscopic work using optical microscopes and micromanipulators for applications in various fields. However, microinjection requires skilled operators, and the considerable shortage of experts has become a recent challenge. We overcome this challenge by propo

Cited by 10SourceScholar
2023

Domains as Objectives: Multi-Domain Reinforcement Learning with Convex-Coverage Set Learning for Domain Uncertainty Awareness

IROS 2023poster

Domain randomization (DR) is a powerful framework that has allowed the transfer of policies from randomized domain (a.k.a. simulation) to real robots with little to no retraining requirement. However, because the policy has to perform well for many different domain conditions, DR tends to produce su…

Cited by 1SourceScholar
2021

Adaptive t-Momentum-based Optimization for Unknown Ratio of Outliers in Amateur Data in Imitation Learning

IROS 2021poster

Behavioral cloning (BC) bears a high potential for safe and direct transfer of human skills to robots. However, demonstrations performed by human operators often contain noise or imperfect behaviors that can affect the efficiency of the imitator if left unchecked. In order to allow the imitators to…

Cited by 4SourceScholar
2016

Quasi-passive dynamic autonomous control to enhance horizontal and turning gait speed control

IROS 2016poster

This paper proposes a quasi-passive dynamic autonomous control (Q-PDAC) for a three-dimensional (3-D) bipedal gait of humanoid robots from start points to goal points. The major approach for 3-D traveling is currently footstep planning by a constantly stable gait with an emphasis on its accurate and…

Cited by 2SourceScholar
2016

Unified bipedal gait for walking and running by dynamics-based virtual holonomic constraint in PDAC

ICRA 2016

Conventional humanoids have achieved walking and running by independent controllers, even though a transition between these independent motions should be added to connect them while ensuring stability. In contrast, human selects walking/running at low/high speed in terms of energy efficiency, and tr

Cited by 6SourceScholar
2015

Optimal use of arm-swing for bipedal walking control

ICRA 2015poster

Walking capability composed of stability and efficiency is one of the most important issues in the field of humanoid robots. An effective swing of the arms is expected to enhance the walking capability under the constraints from the limited body. We propose an arm-swing method to enhance the stabili…

Cited by 6SourceScholar