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Kevin Haninger

17 accepted papers

2026

Anomaly Detection for Generic Failure Monitoring in Robotic Assembly, Screwing and Manipulation

RA-L 2026

Out-of-distribution states in robot manipulation often lead to unpredictable robot behavior or task failure, limiting success rates and increasing risk of damage. Anomaly detection (AD) can identify deviations from expected patterns in data, which can be used to trigger failsafe behaviors and recove

Cited by 0SourceScholar
2025

Planning Human-Robot Co-Manipulation With Human Motor Control Objectives and Multi-Component Reaching Strategies

RA-L 2025

For successful goal-directed human-robot interaction, the robot should adapt to the intentions and actions of the collaborating human. This can be supported by musculoskeletal or data-driven human models, where the former are limited to lower-level functioning such as ergonomics, and the latter have

Cited by 10SourceScholar
2024

A Perturbation-Robust Framework for Admittance Control of Robotic Systems With High-Stiffness Contacts and Heavy Payload

RA-L 2024

Applications involving serial manipulators, in both co-manipulation with humans and autonomous operation tasks, require the robot to render high admittance so as to minimize contact forces and maintain stable contacts with high-stiffness surfaces. This can be achieved through admittance control, how

Cited by 4SourceScholar
2024

Combining Sampling- and Gradient-based Planning for Contact-rich Manipulation

IROS 2024poster

Planning for contact-rich manipulation involves discontinuous dynamics, which presents challenges to planning methods. Sampling-based planners have higher sample complexity in high-dimensional problems and cannot efficiently handle state constraints such as force limits. Gradient-based solvers can s…

Cited by 3SourceScholar
2024

Differentiable Compliant Contact Primitives for Estimation and Model Predictive Control

ICRA 2024poster

Control techniques like MPC can realize contact-rich manipulation which exploits dynamic information, maintaining friction limits and safety constraints. However, contact geometry and dynamics are required to be known. This information is often extracted from CAD, limiting scalability and the abilit…

Cited by 1SourcecodeScholar
2024

Improved Contact Stability for Admittance Control of Industrial Robots with Inverse Model Compensation

IROS 2024poster

Industrial robots have increased payload, repeatability, and reach compared to collaborative robots, however, they have a fixed position controller and low intrinsic admittance. This makes realizing safe contact challenging due to large contact force overshoots in contact transitions and contact ins…

Cited by 0SourceScholar
2023

Increasing Admittance of Industrial Robots By Velocity Feedback Inner-Loop Shaping

ICRA 2023poster

Admittance and impedance controllers are often purely feedforward, using measured external force or motion, respectively, to generate a reference for an inner-loop controller. In this case, the range of dynamics which can be rendered is limited by the inner-loop, which causes, e.g. contact stability…

Cited by 5SourceScholar
2022

Model Predictive Control with Gaussian Processes for Flexible Multi-Modal Physical Human Robot Interaction

ICRA 2022poster

Physical human-robot interaction can improve human ergonomics, task efficiency, and the flexibility of automation, but often requires application-specific methods to detect human state and determine robot response. At the same time, many potential human-robot interaction tasks involve discrete modes…

Cited by 34SourceScholar
2022

Towards High-Payload Admittance Control for Manual Guidance With Environmental Contact

RA-L 2022

Force control enables hands-on teaching and physical collaboration, with the potential to improve ergonomics and flexibility of automation. Established methods for the design of compliance, impedance control, and collision response can achieve free-space stability and acceptable peak contact force o

Cited by 32SourceScholar
2020

Safe high impedance control of a series-elastic actuator with a disturbance observer

ICRA 2020poster

In many series-elastic actuator applications, the ability to safely render a wide range of impedance is important. Advanced torque control techniques such as the disturbance observer (DOB) can improve torque tracking performance, but their impact on safe impedance range is not established. Here, saf…

Cited by 23SourceScholar
2018

Multimodal Environment Dynamics for Interactive Robots: Towards Fault Detection and Task Monitoring

IROS 2018poster

Interactive robots offer improved performance in tasks with environmental uncertainty, but accommodating environment input weakens predictions of contact force or position trajectories, making the identification of subtask completion or faults difficult. This paper develops a task monitoring approac…

Cited by 8SourceScholar
2016

Robust impedance control with applications to a series-elastic actuated system

IROS 2016poster

Impedance control offers a theoretical basis for safe interaction between a robot and the environment, but model uncertainty, disturbances and actuation dynamics can compromise the accuracy of the rendered impedance in implementation. If both the interactive force and motion are directly sensed, the…

Cited by 17SourceScholar