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Abdalla Swikir

24 accepted papers

2026

Learning-Based Robust Control: Unifying Exploration and Distributional Robustness for Reliable Robotics Via Free Energy

ICRA 2026poster

A key challenge towards reliable robotic control is devising computational models that can both learn policies and guarantee robustness when deployed in the field. Inspired by the free energy principle in computational neuroscience, to address these challenges, we propose a model for policy computat…

2026

Safe and Stable Neural Network Dynamical Systems for Robot Motion Planning

RA-L 2026

Learning safe and stable robot motions from demonstrations remains a challenge, especially in complex, nonlinear tasks involving dynamic, obstacle-rich environments. In this paper, we propose Safe and Stable Neural Network Dynamical Systems S<inline-formula xmlns:mml="http://www.w3.org/1998/Math/Mat

Cited by 1SourcecodeScholar
2026

Safe and Stable Neural Network Dynamical Systems for Robot Motion Planning

ICRA 2026poster

Learning safe and stable robot motions from demonstrations remains a challenge, especially in complex, nonlinear tasks involving dynamic, obstacle-rich environments. In this paper, we propose Safe and Stable Neural Network Dynamical Systems S²-NNDS, a learning-from-demonstration framework that simul…

2025

Enhanced Robotic Navigation in Deformable Environments using Learning from Demonstration and Dynamic Modulation

IROS 2025

This paper presents a novel approach for robot navigation in environments containing deformable obstacles. By integrating Learning from Demonstration (LfD) with Dynamical Systems (DS), we enable adaptive and efficient navigation in complex environments where obstacles consist of both soft and hard r

Cited by 0SourcecodeScholar
2025

Evaluating Human-Robot Skill Gaps in Electrical Circuit Inspection: A New Electronic Task Board for Benchmarking Manipulation

ICRA 2025

Robot manipulation researchers reference human performance as a goal for their work, however, human data is seldom present in robotics benchmarks. We introduce a real-world benchmark targeting manipulation skills for performing electrical circuit inspection with a multimeter using an Internet-connec

Cited by 0SourceScholar
2025

LLM-as-BT-Planner: Leveraging LLMs for Behavior Tree Generation in Robot Task Planning

ICRA 2025

Robotic assembly tasks remain an open challenge due to their long horizon nature and complex part relations. Behavior trees (BTs) are increasingly used in robot task planning for their modularity and flexibility, but creating them manually can be effort-intensive. Large language models (LLMs) have r

Cited by 31SourcecodeScholar
2025

MonLog: MONotonic-Constrained LOGistic Regressions for Automated Safety Curve Design

ICRA 2025

The increasing integration of robots in close human environments necessitates robust safety measures that can adapt to evolving tasks and conditions. Current standards rely on task-specific safety evaluations that are often inflexible, requiring repeated assessments whenever task parameters change.

Cited by 0SourceScholar
2025

Scalable Learning of High-Dimensional Demonstrations with Composition of Linear Parameter Varying Dynamical Systems

IROS 2025

Learning from Demonstration (LfD) techniques enable robots to learn and generalize tasks from user demonstrations, eliminating the need for coding expertise among end-users. One established technique to implement LfD in robots is to encode demonstrations in a stable Dynamical System (DS). However, f

Cited by 1SourceScholar
2025

TacDiffusion: Force-Domain Diffusion Policy for Precise Tactile Manipulation

ICRA 2025

Assembly is a crucial skill for robots in both modern manufacturing and service robotics. However, mastering transferable insertion skills that can handle a variety of high-precision assembly tasks remains a significant challenge. This paper presents a novel framework that utilizes diffusion models

Cited by 41SourceScholar
2024

A Novel Variable Stiffness Suspension System for Improved Stability and Control of Tactile Mobile Manipulators

IROS 2024poster

Mobile manipulators (MM) have proven valuable in assisting humans in industrial settings. However, their strict separation from humans in controlled environments limits their effectiveness. Efforts have been made to bridge this gap for physical human-robot interaction (pHRI), leading to the developm…

Cited by 0SourceScholar
2024

Autonomous and Teleoperation Control of a Drawing Robot Avatar

ICRA 2024poster

A drawing robot avatar is a robotic system that allows for telepresence-based drawing, enabling users to remotely control a robotic arm and create drawings in real-time from a remote location. The proposed control framework aims to improve bimanual robot telepresence quality by reducing the user wor…

Cited by 0SourceScholar
2024

CITR: A Coordinate-Invariant Task Representation for Robotic Manipulation

ICRA 2024poster

The basis for robotics skill learning is an adequate representation of manipulation tasks based on their physical properties. As manipulation tasks are inherently invariant to the choice of reference frame, an ideal task representation would also exhibit this property. Nevertheless, most robotic lea…

Cited by 0SourceScholar
2024

Learning Barrier-Certified Polynomial Dynamical Systems for Obstacle Avoidance with Robots

ICRA 2024poster

Established techniques that enable robots to learn from demonstrations are based on learning a stable dynamical system (DS). To increase the robots’ resilience to perturbations during tasks that involve static obstacle avoidance, we propose incorporating barrier certificates into an optimization pro…

Cited by 1SourcecodeScholar
2024

OPENGRASP-LITE Version 1.0: A Tactile Artificial Hand with a Compliant Linkage Mechanism

IROS 2024poster

Recent advancements in artificial hand development have primarily concentrated on enhancing adaptive grasping, dexterity, as well as the integration of biomimetic skin. However, few designs have successfully combined lightweight, cost-effective solutions, and tactile sensing along with adaptive gras…

Cited by 0SourceScholar
2024

Optimal Control for Clutched-Elastic Robots: A Contact-Implicit Approach

ICRA 2024poster

Intrinsically elastic robots surpass their rigid counterparts in a range of different characteristics. By temporarily storing potential energy and subsequently converting it to kinetic energy, elastic robots are capable of highly dynamic motions even with limited motor power. However, the time-depen…

Cited by 1SourceScholar
2024

Trajectory Planning for Non-Prehensile Object Transportation

IROS 2024poster

Non-prehensile transportation of unstable objects presents a challenging task in robotics. To ensure the success of the transportation, it is necessary to consider both the object’s stability via contact dynamics and the motion constraints of the robot. We propose two novel trajectory planning metho…

Cited by 0SourceScholar
2023

Optimally Controlling the Timing of Energy Transfer in Elastic Joints: Experimental Validation of the Bi-Stiffness Actuation Concept

RA-L 2023

Elastic actuation taps into elastic elements' energy storage for dynamic motions beyond rigid actuation. While Series Elastic Actuators (SEA) and Variable Stiffness Actuators (VSA) are highly sophisticated, they do not fully provide control over energy transfer timing. To overcome this problem on th

Cited by 4SourceScholar
2023

Towards Connecting Control to Perception: High-Performance Whole-Body Collision Avoidance Using Control-Compatible Obstacles

IROS 2023poster

One of the most important aspects of autonomous systems is safety. This includes ensuring safe human-robot and safe robot-environment interaction when autonomously performing complex tasks or in collaborative scenarios. Al-though several methods have been introduced to tackle this, most are unsuitab…

Cited by 5SourceScholar
2023

Towards Task-Specific Modular Gripper Fingers: Automatic Production of Fingertip Mechanics

RA-L 2023

The adaption of robotic assembly lines to new products is generally slow and costly, binding the economical usage of a single line to a few products manufactured in masses. An important time factor is the adaption of the assembly robot's gripper fingers to the new product components - since finger d

Cited by 10SourceScholar
2022

BSA - Bi-Stiffness Actuation for optimally exploiting intrinsic compliance and inertial coupling effects in elastic joint robots

IROS 2022poster

Compliance in actuation has been exploited to generate highly dynamic maneuvers such as throwing that take advantage of the potential energy stored in joint springs. However, the energy storage and release could not be well-timed yet. On the contrary, for multi-link systems, the natural system dynam…

Cited by 4SourceScholar
2022

Development of a Collaborative Wheeled Mobile Robot: Design Considerations, Drive Unit Torque Control, and Preliminary Result

ICRA 2022poster

Nowadays, wheeled mobile robots constitute a considerable portion of robots in industrial applications. Generally, regardless of their purpose, these systems are not designed to physically interact with humans, other robots, or the environment. In this study, we present a novel safe autonomous mobil…

Cited by 1SourceScholar
2021

Coordinated Motion Generation and Object Placement: A Reactive Planning and Landing Approach

IROS 2021poster

Similar to human work, robotic tasks sometimes require two hands to be accomplished. This requires coordinated motion planning and control. While fulfilling the task in a coordinated manner is already a big challenge, the task at hand becomes even harder when obstacles are introduced in the environm…

Cited by 13SourceScholar
2021

Reactive Cooperative Manipulation based on Set Primitives and Circular Fields

ICRA 2021poster

This paper addresses the problem of real-time planning in constrained dual-arm manipulation scenarios. Our proposed coupling leverages manipulability information of the cooperative bimanual task-space to a vector-field based planner by means of a repulsive circulatory field, while geometric primitiv…

Cited by 22SourceScholar