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Robert Haschke

14 accepted papers

2024

Learning When to Stop: Efficient Active Tactile Perception with Deep Reinforcement Learning

IROS 2024poster

Actively guiding attention is an important mechanism to employ limited processing resources efficiently. The Recurrent Visual Attention Model (RAM) has been successfully applied to process large input images by sequentially attending to smaller image regions with an RL framework. In tactile percepti…

Cited by 0SourceScholar
2024

Zero-Shot Transfer of a Tactile-based Continuous Force Control Policy from Simulation to Robot

IROS 2024poster

The advent of tactile sensors in robotics has sparked many ideas on how robots can leverage direct contact measurements of their environment interactions to improve manipulation tasks. An important line of research in this regard is grasp force control, which aims to manipulate objects safely by lim…

Cited by 1SourceScholar
2023

Placing by Touching: An Empirical Study on the Importance of Tactile Sensing for Precise Object Placing

IROS 2023poster

This work deals with a practical everyday problem: stable object placement on flat surfaces starting from unknown initial poses. Common object-placing approaches require either complete scene specifications or extrinsic sensor measurements, e.g., cameras, that occasionally suffer from occlusions. We…

Cited by 11SourceScholar
2022

Bio-Inspired Grasping Controller for Sensorized 2-DoF Grippers

IROS 2022poster

We present a holistic grasping controller, combining free-space position control and in-contact force-control for reliable grasping given uncertain object pose estimates. Employing tactile fingertip sensors, undesired object displacement during grasping is minimized by pausing the finger closing mot…

Cited by 4SourcecodeScholar
2020

Barometer-based Tactile Skin for Anthropomorphic Robot Hand

IROS 2020poster

We present our second generation tactile sensor for the Shadow Dexterous Hand's palm. We were able to significantly improve the tactile sensor characteristics by utilizing our latest barometer-based tactile sensing technology with linear (R2 ≥ 0.9996) sensor output and no noticeable hysteresis. The…

Cited by 31SourceScholar
2019

MoveIt! Task Constructor for Task-Level Motion Planning

ICRA 2019poster

A lot of motion planning research in robotics focuses on efficient means to find trajectories between individual start and goal regions, but it remains challenging to specify and plan robotic manipulation actions which consist of multiple interdependent subtasks. The Task Constructor framework we pr…

Cited by 151SourcecodeScholar
2018

Estimating an Articulated Tool's Kinematics via Visuo-Tactile Based Robotic Interactive Manipulation

IROS 2018poster

The usage of articulated tools for autonomous robots is still a challenging task. One of the difficulties is to automatically estimate the tool's kinematics model. This model cannot be obtained from a single passive observation, because some information, such as a rotation axis (hinge), can only be…

Cited by 8SourceScholar
2018

Mechatronic fingernail with static and dynamic force sensing

IROS 2018poster

Our fingernails help us to accomplish a variety of manual tasks, but surprisingly only a few robotic hands are equipped with nails. In this paper, we present a sensorized fingernail for mechatronic hands that can capture static and dynamic interaction forces with the nail. Over the course of several…

Cited by 7SourceScholar
2017

Robot self-protection by virtual actuator fatigue: Application to tendon-driven dexterous hands during grasping

IROS 2017poster

We present a novel force-limitation algorithm to protect fragile robot actuation and transmission systems (like tendon-driven systems) from early wear-out. Inspired by human muscle fatigue, we model artificial actuator fatigue by integrating applied forces over time, gradually limiting applicable fo…

Cited by 8SourceScholar
2016

Distinguishing sliding from slipping during object pushing

IROS 2016poster

The advent of advanced tactile sensing technology triggered the development of methods to employ them for grasp evaluation, online slip detection, and tactile servoing. In contrast to recent approaches to slip detection, distinguishing slip from non-slip conditions, we consider the more difficult ta…

Cited by 40SourceScholar
2015

Augmenting curved robot surfaces with soft tactile skin

IROS 2015poster

We present a novel, soft, tactile skin composed of a fabric-based, stretchable sensor technology based on the piezoresistive effect. Softness is achieved by a combination of a soft silicone padding covered by a skin of more durable, tearproof silicone with an imprinted surface pattern mimicking huma…

Cited by 33SourceScholar
2015

Discriminating liquids using a robotic kitchen assistant

IROS 2015poster

A necessary skill when using liquids in the preparation of food is to be able to estimate viscosity, e.g. in order to control the pouring velocity or to determine the thickness of a sauce. We introduce a method to allow a robotic kitchen assistant discriminate between different but visually similar…

Cited by 21SourceScholar