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Michael Mistry

21 accepted papers

2026

Gust Estimation and Rejection with a Disturbance Observer for Proprioceptive Underwater Soft Morphing Wings

ICRA 2026poster

Unmanned underwater vehicles are increasingly employed for maintenance and surveying tasks at sea, but their operation in shallow waters is often hindered by hydrodynamic disturbances such as waves, currents, and turbulence. These unsteady flows can induce rapid changes in direction and speed, compr…

2025

Learning Long-Horizon Robot Manipulation Skills via Privileged Action

CoRL 2025poster

Long-horizon contact-rich tasks are challenging to learn with reinforcement learning, due to ineffective exploration of high-dimensional state spaces with sparse rewards. The learning process often gets stuck in local optimum and demands task-specific reward fine-tuning for complex scenarios. In th…

Cited by 0SourceScholar
2024

Robust and Dexterous Dual-arm Tele-Cooperation using Adaptable Impedance Control

ICRA 2024poster

In recent years, the need for robots to transition from isolated industrial tasks to shared environments, including human-robot collaboration and teleoperation, has become increasingly evident. Building on the foundation of Fractal Impedance Control (FIC) introduced in our previous work, this paper…

Cited by 4SourceScholar
2022

Efficient Learning of Inverse Dynamics Models for Adaptive Computed Torque Control

IROS 2022poster

Modelling robot dynamics accurately is essential for control, motion optimisation and safe human-robot collaboration. Given the complexity of modern robotic systems, dynamics modelling remains non-trivial, mostly in the presence of compliant actuators, mechanical inaccuracies, friction and sensor no…

Cited by 4SourceScholar
2022

Robust Impedance Control for Dexterous Interaction Using Fractal Impedance Controller with IK-Optimisation

ICRA 2022poster

Robust dynamic interactions are required to move robots in daily environments alongside humans. Optimisation and learning methods have been used to mimic and reproduce human movements. However, they are often not robust and their generalisation is limited. This work proposed a hierarchical control a…

Cited by 2SourceScholar
2021

A Passive Navigation Planning Algorithm for Collision-free Control of Mobile Robots

ICRA 2021poster

Path planning and collision avoidance are challenging in complex and highly variable environments due to the limited horizon of events. In literature, there are multiple model- and learning-based approaches that require significant computational resources to be effectively deployed and they may have…

Cited by 12SourceScholar
2021

Online Dynamic Trajectory Optimization and Control for a Quadruped Robot

ICRA 2021poster

Legged robot locomotion requires the planning of stable reference trajectories, especially while traversing uneven terrain. The proposed trajectory optimization framework is capable of generating dynamically stable base and footstep trajectories for multiple steps. The locomotion task can be defined…

Cited by 33SourceScholar
2021

Robust High-Transparency Haptic Exploration for Dexterous Telemanipulation

ICRA 2021poster

Robotic teleoperation provides human-in-the-loop capabilities of complex manipulation tasks in dangerous or remote environments, such as for planetary exploration or nuclear decommissioning. This work proposes a novel telemanipulation architecture using a passive Fractal Impedance Controller (FIC),…

Cited by 16SourceScholar
2020

Adversarial Generation of Informative Trajectories for Dynamics System Identification

IROS 2020poster

Dnamic System Identification approaches usually heavily rely on evolutionary and gradient-based optimisation techniques to produce optimal excitation trajectories for determining the physical parameters of robot platforms. Current optimisation techniques tend to generate single trajectories. This is…

Cited by 17SourceScholar
2020

Bounded haptic teleoperation of a quadruped robot’s foot posture for sensing and manipulation

ICRA 2020poster

This paper presents a control framework to teleoperate a quadruped robot's foot for operator-guided haptic exploration of the environment. Since one leg of a quadruped robot typically only has 3 actuated degrees of freedom (DoFs), the torso is employed to assist foot posture control via a hierarchic…

Cited by 16SourceScholar
2020

Iterative Semi-parametric Dynamics Model Learning For Autonomous Racing

CoRL 2020

Accurately modeling robot dynamics is crucial to safe and efficient motion control. In this paper, we develop and apply an iterative learning semi-parametric model, with a neural network, to the task of autonomous racing with a Model Predictive Controller (MPC). We present a novel non-linear semi-pa

Cited by 0SourcePDFScholar
2019

Online Optimal Impedance Planning for Legged Robots

IROS 2019poster

Real world applications require robots to operate in unstructured environments. This kind of scenarios may lead to unexpected environmental contacts or undesired interactions, which may harm people or impair the robot. Adjusting the behavior of the system through impedance control techniques is an e…

Cited by 31SourceScholar
2019

Single-shot Foothold Selection and Constraint Evaluation for Quadruped Locomotion

ICRA 2019poster

In this paper, we propose a method for selecting the optimal footholds for legged systems. The goal of the proposed method is to find the best foothold for the swing leg on a local elevation map. First, we evaluate the geometrical characteristics of each cell on the elevation map, checks kinematic c…

Cited by 21SourceScholar
2018

A Model-Based Hierarchical Controller for Legged Systems Subject to External Disturbances

ICRA 2018poster

Legged robots have many potential applications in real-world scenarios where the tasks are too dangerous for humans, and compliance is needed to protect the system against external disturbances and impacts. In this paper, we propose a model-based controller for hierarchical tasks of legged systems s…

Cited by 38SourceScholar
2018

A Projected Inverse Dynamics Approach for Multi-Arm Cartesian Impedance Control

ICRA 2018poster

We propose a model-based control framework for multi-arm manipulation of a rigid object subject to external disturbances. The control framework, based on projected inverse dynamics, decomposes the control law into constrained and unconstrained subspaces. Unconstrained components accomplish the motio…

Cited by 49SourceScholar
2018

Modeling and Control of Multi-Arm and Multi-Leg Robots: Compensating for Object Dynamics During Grasping

ICRA 2018poster

We consider a virtual manipulator in grasping scenarios which allows us to capture the effect of the object dynamics. This modeling approach turns a multi-arm robot into an underactuated system. We observe that controlling floating-base multi-leg robots is fundamentally similar. The Projected Invers…

Cited by 34SourceScholar
2017

Dynamic manipulability of the center of mass: A tool to study, analyse and measure physical ability of robots

ICRA 2017poster

This paper introduces dynamic manipulability of the center of mass (CoM) as a metric to measure robots' physical abilities to accelerate their CoMs in different directions. By decomposing the effects of velocity dependent constraints, such as unilateral contacts and friction cones, CoM dynamic manip…

Cited by 27SourceScholar
2016

Vision-guided state estimation and control of robotic manipulators which lack proprioceptive sensors

IROS 2016poster

This paper presents a vision-based approach for estimating the configuration of, and providing control signals for, an under-sensored robot manipulator using a single monocular camera. Some remote manipulators, used for decommissioning tasks in the nuclear industry, lack proprioceptive sensors becau…

Cited by 17SourceScholar
2015

Projected inverse dynamics control and optimal control for robots in contact with the environment: A comparison

IROS 2015poster

This paper addresses the problem of constrained motion for a manipulator performing a task while in contact with the environment, and investigates two force control frameworks, one based on projected inverse dynamics, and one based on optimal control. Firstly, we propose a control method based on pr…

Cited by 9SourceScholar