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Alexander Schmitz

31 accepted papers

2026

TaSA: Two-Phased Deep Predictive Learning of Tactile Sensory Attenuation for Improving In-Grasp Manipulation

ICRA 2026poster

Humans can achieve diverse in-hand manipulations, such as object pinching and tool use, which often involve simultaneous contact between the object and multiple fingers. This is still an open issue for robotic hands because such dexterous manipulation requires distinguishing between tactile sensatio…

2025

Focused Blind Switching Manipulation Based on Constrained and Regional Touch States of Multi-Fingered Hand Using Deep Learning

ICRA 2025

To achieve a desired grasping posture (including object position and orientation), multi-finger motions need to be conducted according to the the current touch state. Specifically, when subtle changes happen during correcting the object state, not only proprioception but also tactile information fro

Cited by 1SourceScholar
2024

A Combination of a Controllable Clutch and an Oscillating Slider Crank Mechanism for Ease of Direct-Teaching with Various Payloads

ICRA 2024poster

Direct teaching is a straightforward way of teaching new motion to robots. Active methods with torque sensors, for example, can be used so that the robot can follow the movements of the human, but such methods introduce delays. Alternatively, series clutch actuators are easily backdrivable without d…

Cited by 0SourceScholar
2024

Exploratory Motion Guided Tactile Learning for Shape-Consistent Robotic Insertion

IROS 2024poster

Intelligent robots are expected to do manipulation tasks relying on real-time sensing feedback. Especially, tactile sensing plays a more and more important role in precise manipulation tasks. For example, a 1 mm error while inserting a USB stick, which is hard to perceive visually, will result in a…

Cited by 0SourceScholar
2024

Tactile Object Property Recognition Using Geometrical Graph Edge Features and Multi-Thread Graph Convolutional Network

RA-L 2024

Performing dexterous tasks with a multi fingered robotic hand remains challenging. Tactile sensors provide touch states and object features for multifingered tasks, yet the variety in shapes, sizes, textures, deformabilities and masses of everyday objects makes the task conditions diverse. Despite t

Cited by 5SourceScholar
2023

FingerTac - An Interchangeable and Wearable Tactile Sensor for the Fingertips of Human and Robot Hands

IROS 2023poster

Skill transfer from humans to robots is challenging. Presently, many researchers focus on capturing only position or joint angle data from humans to teach the robots. Even though this approach has yielded impressive results for grasping applications, reconstructing motion for object handling or fine…

Cited by 1SourceScholar
2022

A Robotic Grasping State Perception Framework With Multi-Phase Tactile Information and Ensemble Learning

RA-L 2022

Recently, tactile sensing has attracted increasing attention for robotic manipulation. Predicting the grasping stability before lifting objects and detecting the ongoing/onset of slip after lifting objects are two critical and widely studied tasks in robotic tactile manipulation. Previous methods fo

Cited by 20SourceScholar
2022

Detection of Slip from Vision and Touch

ICRA 2022poster

Detecting the onset/ongoing of slip, i.e. if a grasped object is slipping or will slip from the gripper while being lifted, is crucial. Conventionally, it is regarded as a tactile sensing related problem. However, recently multi-modal robotic learning has become popular and is expected to boost the…

Cited by 25SourceScholar
2022

Multi-Fingered In-Hand Manipulation With Various Object Properties Using Graph Convolutional Networks and Distributed Tactile Sensors

RA-L 2022

Multi-fingered hands could be used to achieve many dexterous manipulation tasks, similarly to humans, and tactile sensing could enhance the manipulation stability for a variety of objects. However, tactile sensors on multi-fingered hands have a variety of sizes and shapes. Convolutional neural netwo

Cited by 45SourceScholar
2021

"Safe Skin" - A Low-Cost Capacitive Proximity-Force-Fusion Sensor for Safety in Robots

IROS 2021poster

This paper presents the design and evaluation of the low-cost capacitive proximity-force-fusion sensor "safe skin", which can measure simultaneously the proximity of humans as well as the contact force. It was designed such that the force and proximity sensing functions can work concurrently without…

Cited by 6SourceScholar
2021

SCT-CNN: A Spatio-Channel-Temporal Attention CNN for Grasp Stability Prediction

ICRA 2021poster

Recently, tactile sensing has attracted great interest for robotic manipulation. Predicting if a grasp will be stable or not, i.e. if the grasped object will drop out of the gripper while being lifted, can aid robust robotic grasping. Previous methods paid equal attention to all regions of the tacti…

Cited by 27SourceScholar
2020

A Study on the Elongation Behaviour of Synthetic Fibre Ropes under Cyclic Loading

IROS 2020poster

Synthetic fibre ropes have high tensile strength, a lower friction coefficient and are more flexible than steel ropes, and are therefore increasingly used in robotics. However, their characteristics are not well studied. In particular, previous work investigated the long-term behaviour only under st…

Cited by 11SourceScholar
2020

Development and Evaluation of a Linear Series Clutch Actuator for Vertical Joint Application with Static Balancing

IROS 2020poster

Future robots are expected to share their workspace with humans. Controlling and limiting the forces that such robots exert on their environment is crucial. While force control can be achieved actively with the help of force sensing, passive mechanisms have no time delay in their response to externa…

Cited by 2SourceScholar
2020

Development of Exo-Glove for Measuring 3-axis Forces Acting on the Human Finger without Obstructing Natural Human-Object Interaction

IROS 2020poster

Measuring the forces that humans exert with their fingers could have many potential applications, such as skill transfer from human experts to robots or monitoring humans. In this paper we introduce the "Exo-Glove" system, which can measure the joint angles and forces acting on the human finger with…

Cited by 4SourceScholar
2020

Stable In-Grasp Manipulation with a Low-Cost Robot Hand by Using 3-Axis Tactile Sensors with a CNN

IROS 2020poster

The use of tactile information is one of the most important factors for achieving stable in-grasp manipulation. Especially with low-cost robotic hands that provide low-precision control, robust in-grasp manipulation is challenging. Abundant tactile information could provide the required feed-back to…

Cited by 23SourceScholar
2020

Variable In-Hand Manipulations for Tactile-Driven Robot Hand via CNN-LSTM

IROS 2020poster

Performing various in-hand manipulation tasks, without learning each individual task, would enable robots to act more versatile, while reducing the effort for training. However, in general it is difficult to achieve stable in-hand manipulation, because the contact state between the fingertips become…

Cited by 16SourceScholar
2019

Morphology-Specific Convolutional Neural Networks for Tactile Object Recognition with a Multi-Fingered Hand

ICRA 2019poster

Distributed tactile sensors on multi-fingered hands can provide high-dimensional information for grasping objects, but it is not clear how to optimally process such abundant tactile information. The current paper explores the possibility of using a morphology-specific convolutional neural network (M…

Cited by 36SourceScholar
2019

Robot Finger with Remote Center of Motion Mechanism for Covering Joints with Thick Skin

IROS 2019poster

An end-effector such as a gripper or multi-fingered hand is essential to enable robots to grasp and manipulate objects of various size and shape. Soft skin increases the grasp stability and can provide space for tactile sensors. However, covering the joints with skin is challenging, typically causin…

Cited by 8SourceScholar
2019

Sequential clustering for tactile image compression to enable direct adaptive feedback

IROS 2019poster

The sense of touch is often crucial for humans to perform manipulation tasks. Providing tactile feedback during teleoperation or for users of prosthetic devices would be beneficial. However, the representation of tactile information constitutes a major technical challenge, since the numerous and pos…

Cited by 1SourceScholar
2018

A New Silicone Structure for uSkin - A Soft, Distributed, Digital 3-Axis Skin Sensor and Its Integration on the Humanoid Robot iCub

RA-L 2018

Tactile sensing is one important element that can enable robots to interact with an unstructured world. By having tactile perception, a robot can explore its environment by touching objects. Like human skin, a tactile sensor that can provide rich information such as distributed normal and shear forc

Cited by 132SourceScholar
2018

A Wearable Three-Axis Tactile Sensor for Human Fingertips

RA-L 2018

Human training data can scaffold robot imitation learning. However, most datagloves only record joint angles, but for many tasks, force control is more important. They also cover the human skin, thereby making a natural interaction of the human with the object impossible. This letter suggests a wear

Cited by 17SourceScholar
2018

An Adjustable Force Sensitive Sensor with an Electromagnet for a Soft, Distributed, Digital 3-axis Skin Sensor

IROS 2018poster

Typically, the range and sensitivity of force sensors are determined during production. However, to be able to do both delicate and high-force demanding work, adjustable force sensitivity would be beneficial. The current paper proposes such a sensor by implementing a planar electromagnet above a 3-a…

Cited by 11SourceScholar
2018

Covering a Robot Fingertip With uSkin: A Soft Electronic Skin With Distributed 3-Axis Force Sensitive Elements for Robot Hands

RA-L 2018

Distributed tactile sensing is crucial to perform stable, subtle, and precise manipulation so that a robot can recognize and handle objects properly. However, currently existing skin sensors still have common problems such as complex and expensive production or are difficult to integrate into robot

Cited by 150SourceScholar
2018

Evaluation of Series Clutch Actuators With a High Torque-to-Weight Ratio for Open-Loop Torque Control and Collision Safety

RA-L 2018

For robots that act outside of tightly controlled environments, force control is often better suited than position control. Series clutch actuators, used without an elastic element, can achieve excellent position control or can be used as a force/torque source. Clutches based on different physical p

Cited by 10SourceScholar
2018

Large Range Impedance Shaping for Physical Human Robot Interaction Through Light Quantity Measurement Based Torque Regulation

RA-L 2018

Impedance shaping is a fundamental requirement for physical human-robot interaction. In order to achieve a large range impedance capability, light quantity measurement based torque feedback regulation has been introduced, based on which a stiff actuator design can be realized with reliable torque me

Cited by 1SourceScholar
2018

Object Recognition Through Active Sensing Using a Multi-Fingered Robot Hand with 3D Tactile Sensors

IROS 2018poster

This paper investigates tactile object recognition with relatively densely distributed force vector measurements and evaluates what kind of tactile information is beneficial for object recognition. The uSkin tactile sensors are embedded in an Allegro Hand, and provide 240 triaxial force vector measu…

Cited by 57SourceScholar
2017

Bioinspired Ciliary Force Sensor for Robotic Platforms

RA-L 2017

The detection of small forces is of great interest in any robotic application that involves interaction with the environment (e.g., objects manipulation, physical human-robot interaction, minimally invasive surgery), since it allows the robot to detect the contacts early on and to act accordingly. I

Cited by 40SourceScholar
2017

Low-cost 3-axis soft tactile sensors for the human-friendly robot Vizzy

ICRA 2017poster

In this paper we present a low-cost and easy to fabricate 3-axis tactile sensor based on magnetic technology. The sensor consists in a small magnet immersed in a silicone body with an Hall-effect sensor placed below to detect changes in the magnetic field caused by displacements of the magnet, gener…

Cited by 102SourceScholar
2016

Design optimisation and performance evaluation of a toroidal magnetorheological hydraulic piston head

IROS 2016poster

The advantages of mechanical compliance have driven the development of devices using new smart materials. A new kind of magnetorheological piston based on a toroidal array of magnetorheological valves, has been previously tested to prove its feasibility. However, being an initial prototype its poten…

Cited by 5SourceScholar
2016

Position-force combination control with passive flexibility for versatile in-hand manipulation based on posture interpolation

IROS 2016poster

In-hand manipulation is often needed to accomplish a practical task after grasping an object. In-hand manipulation of variously sized and shaped objects in multi-fingered hands without dropping the object is challenging. In this paper we suggest a combined strategy of force control and passive adapt…

Cited by 11SourceScholar
2015

Robust in-hand manipulation of variously sized and shaped objects

IROS 2015poster

Moving objects within the hand is challenging, especially if the objects are of various shape and size. In this paper we use machine learning to learn in-hand manipulation of such various sized and shaped objects. The TWENDY-ONE hand is used, which has various properties that makes it well suited fo…

Cited by 28SourceScholar