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Neville Hogan

17 accepted papers

2025

Minimally-Back-Drivable Robots for Rehabilitation: Path-Adherent Permissiveness Control via Trajectory Adaptation

RA-L 2025

In pursuit of effective robot-assisted rehabilitation, it is imperative that the robot facilitates rather than hinders the patient's self-movements in appropriate directions. This essential attribute, termed <italic xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/x

Cited by 0SourceScholar
2022

Dynamic Primitives Limit Human Force Regulation During Motion

RA-L 2022

Humans excel at physical interaction despite long feedback delays and low-bandwidth actuators. Yet little is known about how humans manage physical interaction. A quantitative understanding of how they do is critical for designing machines that can safely and effectively interact with humans, e.g. a

Cited by 9SourceScholar
2021

Manipulating a Whip in 3D via Dynamic Primitives

IROS 2021poster

A prominent challenge in the field of robotics is manipulation of flexible objects. One major factor that makes this task difficult is the complex dynamics emerging from its high-dimensional structure. This argues against the use of popular optimization-based approaches, which scale poorly with syst…

Cited by 12SourceScholar
2021

Muscle-reflex model of human locomotion entrains to mechanical perturbations

IROS 2021poster

Prior experiments have shown that human gait synchronizes to periodic torque pulses applied about the hip and ankle joints by robotic exoskeletons. Importantly, entrainment occurred even when the pulse period differed slightly from the user’s preferred stride period, making it a viable approach to i…

Cited by 2SourceScholar
2020

Modulating hip stiffness with a robotic exoskeleton immediately changes gait

ICRA 2020poster

Restoring healthy kinematics is a critical component of assisting and rehabilitating impaired locomotion. Here we tested whether spatiotemporal gait patterns can be modulated by applying mechanical impedance to hip joints. Using the Samsung GEMS-H exoskeleton, we emulated a virtual spring (positive…

Cited by 16SourceScholar
2020

Transient Behavior and Predictability in Manipulating Complex Objects

ICRA 2020poster

Relatively little work in human and robot control has examined the control of underactuated objects with internal dynamics, such as transporting a cup of coffee, a task that presents little problems for humans. This study examined how humans move a `cup of coffee' with a view to identify principles…

Cited by 10SourceScholar
2019

Feasibility of Gait Entrainment to Hip Mechanical Perturbation for Locomotor Rehabilitation

IROS 2019poster

While rehabilitation of upper-limb motor function with human-interactive robots has been met with success, robot-aided locomotor rehabilitation has proven challenging. To inform more effective approaches to robotic gait therapy, it is important to understand neuro-mechanical dynamics and control of…

Cited by 13SourceScholar
2019

Human-inspired balance model to account for foot-beam interaction mechanics

ICRA 2019poster

The locomotion and balance capabilities of bipedal robots have greatly improved in recent years. However, maintaining balance on difficult terrain still poses a significant challenge. In this paper, we examined how humans maintain mediolateral balance when standing on a narrow beam with bare feet an…

Cited by 7SourceScholar
2018

Robot Controllers Compatible with Human Beam Balancing Behavior

IROS 2018poster

Standing on a beam is a challenging motor skill that requires the regulation of upright balance and stability. In this paper, we analyzed the behavior of humans balancing on a narrow beam without footwear. The results revealed high anti-correlation between lumped upper- and lower-body angular moment…

Cited by 9SourceScholar
2018

Stability and Predictability in Dynamically Complex Physical Interactions

ICRA 2018poster

This study examines human control of physical interaction with objects that exhibit complex (nonlinear, chaotic, underactuated) dynamics. We hypothesized that humans exploited stability properties of the human-object interaction. Using a simplified 2D model for carrying a “cup of coffee”, we develop…

Cited by 10SourceScholar
2018

Velocity-Curvature Patterns Limit Human-Robot Physical Interaction

RA-L 2018

Physical human-robot collaboration is becoming more common, both in industrial and service robotics. Cooperative execution of a task requires intuitive and efficient interaction between both actors. For humans, this means being able to predict and adapt to robot movements. Given that natural human m

Cited by 51SourceScholar
2016

Compliant actuation for energy efficient impedance modulation

ICRA 2016

Energy efficient compliant actuation is the missing ingredient and key enabler of next-generation autonomous systems, domestic robots, prosthetic devices, orthotic devices, and wearable exoskeletons, to name a few. For all these devices, one would wish to develop actuators enabling wide range impeda

Cited by 28SourceScholar
2016

Robot locomotion on hard and soft ground: Measuring stability and ground properties in-situ

ICRA 2016

Dynamic behavior of legged robots is strongly affected by ground impedance. Empirical observation of robot hardware is needed because ground impedance and foot-ground interaction is challenging to predict in simulation. This paper presents experimental data of the MIT Super Mini Cheetah robot hoppin

Cited by 47SourceScholar