← Search

Nikos Tsagarakis

27 accepted papers

2026

A Proximity-Based Framework for Human-Robot Seamless Close Interactions

ICRA 2026poster

The administration and monitoring of shared workspaces are crucial for seamlessly integrating robots to operate in close interactions with humans. Adaptive, versatile, and reliable robot movements are key to achieving effective and successful human-robot synergy. In situations involving unexpected o…

Cited by 0SourceScholar
2024

Autonomous Behavior Planning For Humanoid Loco-manipulation Through Grounded Language Model

IROS 2024poster

Enabling humanoid robots to perform autonomously loco-manipulation in unstructured environments is crucial and highly challenging for achieving embodied intelligence. This involves robots being able to plan their actions and behaviors in long-horizon tasks while using multi-modality to perceive devi…

Cited by 4SourceScholar
2024

HYPERmotion: Learning Hybrid Behavior Planning for Autonomous Loco-manipulation

CoRL 2024poster

Enabling robots to autonomously perform hybrid motions in diverse environments can be beneficial for long-horizon tasks such as material handling, household chores, and work assistance. This requires extensive exploitation of intrinsic motion capabilities, extraction of affordances from rich environ…

Cited by 6SourcecodeScholar
2024

Wearable Haptics for a Marionette-inspired Teleoperation of Highly Redundant Robotic Systems

ICRA 2024poster

The teleoperation of complex, kinematically redundant robots with loco-manipulation capabilities represents a challenge for human operators, who have to learn how to operate the many degrees of freedom of the robot to accomplish a desired task. In this context, developing an easy-to-learn and easy-t…

Cited by 4SourceScholar
2022

Manipulability-Aware Shared Locomanipulation Motion Generation for Teleoperation of Mobile Manipulators

IROS 2022poster

The teleoperation of mobile manipulators may pose significant challenges, demanding complex interfaces and causing a substantial burden to the human operator due to the need to switch continuously from the manipulation of the arm to the control of the mobile platform. Hence, several works have consi…

Cited by 9SourceScholar
2021

Grasping with Embedded Synergies through a Reconfigurable Electric Actuation Topology

IROS 2021poster

Kinematic and force synergies can be used to reduce the complexity and dimensionality of the motion generation and control problem, as well as facilitate the mechanical implementation of robotic hands. In this paper we present a novel implementation of hardware synergies realized on the actuation le…

Cited by 0SourceScholar
2021

Locomotion Adaptation in Heavy Payload Transportation Tasks with the Quadruped Robot CENTAURO

ICRA 2021poster

This paper presents a reactive legged locomotion generation scheme that enables our quadruped robot CEN-TAURO to adapt to varying payloads while walking. The center-of-mass (CoM) trajectories are generated in real time in a model predictive control (MPC) fashion, trading off large stability margins…

Cited by 19SourceScholar
2021

Minimum-Effort Task-based Design Optimization of Modular Reconfigurable Robots

ICRA 2021poster

The flexibility and adaptability of modular and re-configurable robots opens up new opportunities for on-demand robot morphology optimization for varying tasks. In particular, multi-arm robotic systems can expand the solution space for any given task. In this paper, we present a novel approach to ex…

Cited by 6SourceScholar
2020

On the efficient control of series-parallel compliant articulated robots

ICRA 2020poster

Torque distribution in redundant robots that combine the potential of asymmetric series-parallel actuated branches and multi-articulation pose a non-trivial challenge. To address the problem, this work proposes a novel optimization based controller that can accommodate various quadratic criteria to…

Cited by 5SourceScholar
2020

Robust Gait Synthesis Combining Constrained Optimization and Imitation Learning

IROS 2020poster

Despite plenty of motion planning strategies have been proposed for bipedal locomotion, enhancing the walking robustness in real-world environments is still an open question. This paper focuses on robust body and leg trajectories synthesis through integrating constrained optimization with imitation…

Cited by 10SourceScholar
2019

Agile Standing-up Control of Humanoids: Energy-based Reactive Contact Wrench Optimization with Strict Dynamic Consistency

IROS 2019poster

This paper presents a dynamic whole-body control method for humanoids to render agile and stable standing-up motion based on energy concepts. First, to cope with the standing-up problem with multiple contacts in hierarchical tasks, an enhanced operational-space based whole-body control (WBC) framewo…

Cited by 5SourceScholar
2019

Online Relative Footstep Optimization for Legged Robots Dynamic Walking Using Discrete-Time Model Predictive Control

IROS 2019poster

We present a unified control framework that generates dynamic walking motions for biped and quadruped robots with online relative footstep optimization. The footstep optimization is formulated as a discrete-time Model Predictive Control problem which determines future footstep locations. The framewo…

Cited by 36SourceScholar
2019

Versatile Reactive Bipedal Locomotion Planning Through Hierarchical Optimization

ICRA 2019poster

When experiencing disturbances during locomotion, human beings use several strategies to maintain balance, e.g. changing posture, modulating step frequency and location. However, when it comes to the gait generation for humanoid robots, modifying step time or body posture in real time introduces non…

Cited by 13SourceScholar
2018

A Method for Robot Motor Fatigue Management in Physical Interaction and Human-Robot Collaboration Tasks

IROS 2018poster

Collaborative robots are often designed with limited power and force capacity, with the aim to provide affordable solutions and ensure human safety in case of accidental collisions and impacts. If a task requires a power beyond this capacity, or is performed repeatedly over long periods, such limits…

Cited by 5SourceScholar
2018

Neural-Network-Controlled Spring Mass Template for Humanoid Running

IROS 2018poster

To generate dynamic motions such as hopping and running on legged robots, model-based approaches are usually used to embed the well studied spring-loaded inverted pendulum (SLIP) model into the whole-body robot. In producing controlled SLIP-like behaviors, existing methods either suffer from online…

Cited by 8SourceScholar
2018

Online Human Muscle Force Estimation for Fatigue Management in Human-Robot Co-Manipulation

IROS 2018poster

In this paper, we propose a novel method for selective management of muscle fatigue in human-robot co-manipulation. The proposed framework enables the detection of excessive fatigue levels of an individual muscle group while executing a certain task, and provides anticipatory robotic responses to di…

Cited by 32SourceScholar
2017

A torque-controlled humanoid robot riding on a two-wheeled mobile platform

IROS 2017poster

This paper is motivated by the questions: What would happen if a humanoid robot is put on a Segway? Is it possible for the humanoid robot to use this transportation device that is specifically designed for human? Simulation involving a two-wheeled mobile platform (TWMP) and our humanoid robot COMAN…

Cited by 12SourceScholar
2017

HERI hand: A quasi dexterous and powerful hand with asymmetrical finger dimensions and under actuation

IROS 2017poster

In this paper, the Hardware Embedded Reduced Intricacy (HERI) Hand, which is a novel tendon driven three-finger under-actuated hand demonstrating balanced dexterous finger manipulation and powerful grasping of common objects is presented. The third finger of HERI Hand is asymmetrically designed in t…

Cited by 25SourceScholar
2017

Teleoperation in cluttered environments using wearable haptic feedback

IROS 2017poster

Robotic teleoperation in cluttered environments is attracting increasing attention for its potential in hazardous scenarios, disaster response, and telemaintenance. Although haptic feedback has been proven effective in such applications, commercially-available grounded haptic interfaces still show s…

Cited by 94SourceScholar
2017

What is the torque bandwidth of this actuator?

IROS 2017poster

The paper proposes a method to assess the feasible torque bandwidth for electrically driven torque controllable actuators over its entire torque amplitude range. The method solely relies on the knowledge of hardware parameters and thereby determines the physically feasible torque control bandwidth a…

Cited by 22SourceScholar
2016

Towards multi-modal intention interfaces for human-robot co-manipulation

IROS 2016poster

This paper presents a novel approach for human-robot cooperation in tasks with dynamic uncertainties. The essential element of the proposed method is a multi-modal interface that provides the robot with the feedback about the human motor behaviour in real-time. The human muscle activity measurements…

Cited by 96SourceScholar
2015

Active control of under-actuated foot tilting for humanoid push recovery

IROS 2015poster

We propose a novel control framework to demonstrate a unique foot tilting maneuver based on ankle torque control for humanoid balance recovery. The framework consists of the variable impedance regulation at the center of mass of the robot based on the ankle torque control, the virtual stoppers to pr…

Cited by 11SourceScholar
2015

Exploiting the redundancy for humanoid robots to dynamically step over a large obstacle

IROS 2015poster

In this paper, we resolve the issue of stepping over a large obstacle by exploiting the redundancy of pelvis rotation and the versatility of foot trajectories for the humanoids. The control framework consists of a motion pattern that exploits the redundancy of pelvis rotation to enlarge the kinemati…

Cited by 15SourceScholar