← Search

Robert K Katzschmann

31 accepted papers

2026

EgoVerse: An Egocentric Human Dataset for Robot Learning from Around the World

RSS 2026poster

Robot learning increasingly depends on large and diverse data, yet robot data collection remains expensive and difficult to scale. Egocentric human data offer a promising alternative by capturing rich manipulation behavior across everyday environments. However, existing human datasets are often limi…

Cited by 0SourceScholar
2025

Beyond Anthropomorphism: Enhancing Grasping and Eliminating a Degree of Freedom by Fusing the Abduction of Digits Four and Five

IROS 2025

This paper presents the SABD hand, a 16-degree-of-freedom (DoF) robotic hand that departs from purely anthropomorphic designs to achieve an expanded grasp envelope, enable manipulation poses beyond human capability, and reduce the required number of actuators. This is achieved by combining the adduc

Cited by 0SourceScholar
2025

Model-Based Capacitive Touch Sensing in Soft Robotics: Achieving Robust Tactile Interactions for Artistic Applications

RA-L 2025

In this letter, we present a touch technology to achieve tactile interactivity for human-robot interaction (HRI) in soft robotics. By combining a capacitive touch sensor with an online solid mechanics simulation provided by the SOFA framework, contact detection is achieved for arbitrary shapes. Furt

Cited by 5SourceScholar
2025

ORCA: An Open-Source, Reliable, Cost-Effective, Anthropomorphic Robotic Hand for Uninterrupted Dexterous Task Learning

IROS 2025

General-purpose robots should possess humanlike dexterity and agility to perform tasks with the same versatility as us. A human-like form factor further enables the use of vast datasets of human-hand interactions. However, the primary bottleneck in dexterous manipulation lies not only in software bu

Cited by 23SourceScholar
2025

Reliable Aerial Manipulation: Combining Visual Tracking with Range Sensing for Robust Grasping

ICRA 2025

Reliable object localization is a critical challenge in drone-based aerial manipulation, particularly when objects are outside the camera's field of view. This paper presents a new approach to enhance drone reliability in aerial grasping tasks by integrating a 1D time-of-flight range sensor with a v

Cited by 2SourceScholar
2025

Sampling-Based Model Predictive Control for Dexterous Manipulation on a Biomimetic Tendon-Driven Hand

IROS 2025

Biomimetic and compliant robotic hands offer the potential for human-like dexterity, but controlling them is challenging due to high dimensionality, complex contact inter-actions, and uncertainties in state estimation. Sampling-based model predictive control (MPC), using a physics simulator as the d

Cited by 5SourceScholar
2025

Stretchable Electrohydraulic Artificial Muscle for Full Motion Ranges in Musculoskeletal Antagonistic Joints

ICRA 2025

Artificial muscles play a crucial role in musculoskeletal robotics and prosthetics to approximate the force-generating functionality of biological muscle. However, current artificial muscle systems are typically limited to either contraction or extension, not both. This limitation hinders the develo

Cited by 3SourceScholar
2024

An Open-Source Soft Robotic Platform for Autonomous Aerial Manipulation in the Wild

CoRL 2024poster

Aerial manipulation combines the versatility and speed of flying platforms with the functional capabilities of mobile manipulation, which presents significant challenges due to the need for precise localization and control. Traditionally, researchers have relied on off-board perception systems, whic…

Cited by 12SourcecodeScholar
2024

Beyond Regular Grids: Fourier-Based Neural Operators on Arbitrary Domains

ICML 2024poster

The computational efficiency of many neural operators, widely used for learning solutions of PDEs, relies on the fast Fourier transform (FFT) for performing spectral computations. As the FFT is limited to equispaced (rectangular) grids, this limits the efficiency of such neural operators when applie…

Cited by 6SourcePDFScholar
2024

High-Frequency Capacitive Sensing for Electrohydraulic Soft Actuators

IROS 2024poster

The need for compliant and proprioceptive actuators has grown more evident in pursuing more adaptable and versatile robotic systems. Hydraulically Amplified Self-Healing Electrostatic (HASEL) actuators offer distinctive advantages with their inherent softness and flexibility, making them promising c…

Cited by 2SourceScholar
2024

Multi-Tap Resistive Sensing and FEM Modeling Enables Shape and Force Estimation in Soft Robots

RA-L 2024

We address the challenge of reliable and accurate proprioception in soft robots, specifically soft robots with tight packaging constraints and relying only on internally embedded sensors. While various sensing approaches with single sensors have commonly been tried using a constant curvature assumpt

Cited by 16SourceScholar
2024

Rotograb: Combining Biomimetic Hands with Industrial Grippers using a Rotating Thumb

IROS 2024poster

The development of robotic grippers and hands for automation aims to emulate human dexterity without sacrificing the efficiency of industrial grippers. This study introduces Rotograb, a tendon-actuated robotic hand featuring a novel rotating thumb. The aim is to combine the dexterity of human hands…

Cited by 0SourceScholar
2024

Self-Sensing Feedback Control of an Electrohydraulic Robotic Shoulder

ICRA 2024poster

The human shoulder, with its glenohumeral joint, tendons, ligaments, and muscles, allows for the execution of complex tasks with precision and efficiency. However, current robotic shoulder designs lack the compliance and compactness inherent in their biological counterparts. A major limitation of th…

Cited by 1SourceScholar
2024

Sensorized Soft Skin for Dexterous Robotic Hands

ICRA 2024poster

Conventional industrial robots often use two-fingered grippers or suction cups to manipulate objects or interact with the world. Because of their simplified design, they are unable to reproduce the dexterity of human hands when manipulating a wide range of objects. While the control of humanoid hand…

Cited by 2SourceScholar
2024

Sim-to-Real of Soft Robots With Learned Residual Physics

RA-L 2024

Accurately modeling soft robots in simulation is computationally expensive and commonly falls short of representing the real world. This well-known discrepancy, known as the sim-to-real gap, can have several causes, such as coarsely approximated geometry and material models, manufacturing defects, v

Cited by 35SourcecodeScholar
2023

Towards a Physics-Based Model for Steerable Eversion Growing Robots

RA-L 2023

Soft robots that grow through eversion/apical extension can effectively navigate fragile environments such as ducts and vessels inside the human body. This paper presents the physics-based model of a miniature steerable eversion growing robot. We demonstrate the robot's growing, steering, stiffening

Cited by 19SourceScholar
2022

A Unified and Modular Model Predictive Control Framework for Soft Continuum Manipulators under Internal and External Constraints

IROS 2022poster

Fluidically actuated soft robots have promising capabilities such as inherent compliance and user safety. The control of soft robots needs to properly handle nonlinear actuation dynamics, motion constraints, workspace limitations, and variable shape stiffness, so having a unique algorithm for all th…

Cited by 12SourceScholar
2022

Adaptive Dynamic Sliding Mode Control of Soft Continuum Manipulators

ICRA 2022poster

Soft robots are made of compliant materials and perform tasks that are challenging for rigid robots. However, their continuum nature makes it difficult to develop model-based control strategies. This work presents a robust model-based control scheme for soft continuum robots. Our dynamic model is ba…

Cited by 23SourceScholar
2022

DeSKO: Stability-Assured Robust Control with a Deep Stochastic Koopman Operator

ICLR 2022poster

The Koopman operator theory linearly describes nonlinear dynamical systems in a high-dimensional functional space and it allows to apply linear control methods to highly nonlinear systems. However, the Koopman operator does not account for any uncertainty in dynamical systems, causing it to perform…

Cited by 53SourcePDFScholar
2022

Model-Based Disturbance Estimation for a Fiber-Reinforced Soft Manipulator using Orientation Sensing

IROS 2022poster

To aid in real-world situations, soft robots need to be able to estimate their state and external interactions based on proprioceptive sensors. Estimating disturbances allows a soft robot to perform desirable force control. However, even in the case of rigid manipulators, force estimation at the end…

Cited by 11SourceScholar
2022

Planar Modeling and Sim-to-Real of a Tethered Multimaterial Soft Swimmer Driven by Peano-HASELs

IROS 2022poster

Soft robotics has the potential to revolutionize robotic locomotion, in particular, soft robotic swimmers offer a minimally invasive and adaptive solution to explore and preserve our oceans. Unfortunately, current soft robotic swimmers are vastly inferior to evolved biological swimmers, especially i…

Cited by 10SourceScholar
2022

Prismatic Soft Actuator Augments the Workspace of Soft Continuum Robots

IROS 2022poster

Soft robots are promising for manipulation tasks thanks to their compliance, safety, and high degree of freedom. However, the commonly used bidirectional continuum segment design means soft robotic manipulators only function in a limited hemispherical workspace. This work increases a soft robotic ar…

Cited by 5SourceScholar
2022

RAPTOR: Rapid Aerial Pickup and Transport of Objects by Robots

IROS 2022poster

Rapid aerial grasping through robots can lead to many applications that utilize fast and dynamic picking and placing of objects. Rigid grippers traditionally used in aerial manipulators require high precision and specific object geometries for successful grasping. We propose RAPTOR, a quadcopter pla…

Cited by 34SourcecodeScholar
2022

Sim2Real for Soft Robotic Fish via Differentiable Simulation

IROS 2022poster

Accurate simulation of soft mechanisms under dynamic actuation is critical for the design of soft robots. We address this gap with our differentiable simulation tool by learning the material parameters of our soft robotic fish. On the example of a soft robotic fish, we demonstrate an experimentally-…

Cited by 22SourceScholar
2017

Enabling independent navigation for visually impaired people through a wearable vision-based feedback system

ICRA 2017poster

This work introduces a wearable system to provide situational awareness for blind and visually impaired people. The system includes a camera, an embedded computer and a haptic device to provide feedback when an obstacle is detected. The system uses techniques from computer vision and motion planning…

Cited by 205SourceScholar
2016

Cyclic hydraulic actuation for soft robotic devices

IROS 2016poster

Undulating structures are one of the most diverse and successful forms of locomotion in nature, both on ground and in water. This paper presents a comparative study for actuation by undulation in water. We focus on actuating a 1DOF systems with several mechanisms. A hydraulic pump attached to a soft…

Cited by 45SourceScholar
2016

Printable hydraulics: A method for fabricating robots by 3D co-printing solids and liquids

ICRA 2016

This paper introduces a novel technique for fabricating functional robots using 3D printers. Simultaneously depositing photopolymers and a non-curing liquid allows complex, pre-filled fluidic channels to be fabricated. This new printing capability enables complex hydraulically actuated robots and ro

Cited by 213SourceScholar
2015

Haptic identification of objects using a modular soft robotic gripper

IROS 2015poster

This work presents a soft hand capable of robustly grasping and identifying objects based on internal state measurements. A highly compliant hand allows for intrinsic robustness to grasping uncertainty, but the specific configuration of the hand and object is not known, leaving undetermined if a gra…

Cited by 375SourceScholar