← Search

Andrew Bylard

9 accepted papers

2024

On the Performance of Jerk-Constrained Time-Optimal Trajectory Planning for Industrial Manipulators

ICRA 2024poster

Jerk-constrained trajectories offer a wide range of advantages that collectively improve the performance of robotic systems, including increased energy efficiency, durability, and safety. In this paper, we present a novel approach to jerk-constrained time-optimal trajectory planning (TOTP), which fo…

Cited by 3SourceScholar
2023

Real-Time Model Predictive Control for Industrial Manipulators with Singularity-Tolerant Hierarchical Task Control

ICRA 2023poster

This paper proposes a real-time model predictive control (MPC) strategy for accomplishing multiple tasks using robots within a finite-time horizon. In industrial robotic applications, it is crucial to consider various constraints to ensure that joint position, velocity, and torque limits are not exc…

Cited by 18SourceScholar
2022

ReachBot: A Small Robot with Exceptional Reach for Rough Terrain

ICRA 2022poster

ReachBot is a new concept for planetary exploration, consisting of a small body and long, lightweight extending arms loaded primarily in tension. The arms are equipped with spined grippers for anchoring on rock surfaces. The design and testing of a planar prototype is presented here. Experiments wit…

Cited by 19SourceScholar
2021

Composable Geometric Motion Policies using Multi-Task Pullback Bundle Dynamical Systems

ICRA 2021poster

Despite decades of work in fast reactive planning and control, challenges remain in developing reactive motion policies on non-Euclidean manifolds and enforcing constraints while avoiding undesirable potential function local minima. This work presents a principled method for designing and fusing des…

Cited by 18SourcecodeScholar
2020

Underactuated Gecko Adhesive Gripper for Simple and Versatile Grasp

ICRA 2020poster

Gecko-inspired adhesives have several desirable characteristics in robotic grasping: controllable activation and deactivation of adhesion, ability to grasp and release with minimal disturbance, and grasping without the need of form closure. Previously proposed grippers with this technology either re…

Cited by 17SourceScholar
2019

GuSTO: Guaranteed Sequential Trajectory optimization via Sequential Convex Programming

ICRA 2019poster

Sequential Convex Programming (SCP) has recently seen a surge of interest as a tool for trajectory optimization. However, most available methods lack rigorous performance guarantees and they are often tailored to specific optimal control setups. In this paper, we present GuSTO (Guaranteed Sequential…

Cited by 179SourcecodeScholar
2019

Trajectory Optimization on Manifolds: A Theoretically-Guaranteed Embedded Sequential Convex Programming Approach

RSS 2019poster

Sequential Convex Programming (SCP) has recently gained popularity as a tool for trajectory optimization due to its sound theoretical properties and practical performance. Yet, most SCP-based methods for trajectory optimization are restricted to Euclidean settings, which precludes their application…

2016

Free-flyer acquisition of spinning objects with gecko-inspired adhesives

ICRA 2016

We explore the use of grippers with gecko-inspired adhesives for spacecraft docking and acquisition of tumbling objects in microgravity. Towards the goal of autonomous object manipulation in space, adhesive grippers mounted on planar free-floating platforms are shown to be tolerant of a broad range

Cited by 39SourceScholar