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Ross Hartley

5 accepted papers

2019

Rapid Trajectory optimization Using C-FROST with Illustration on a Cassie-Series Dynamic Walking Biped

IROS 2019poster

One of the big attractions of low-dimensional models for gait design has been the ability to compute solutions rapidly, whereas one of their drawbacks has been the difficulty in mapping the solutions back to the target robot. This paper presents a set of tools for rapidly determining solutions for “…

Cited by 57SourcecodeScholar
2018

Contact-Aided Invariant Extended Kalman Filtering for Legged Robot State Estimation

RSS 2018poster

This paper derives a contact-aided inertial navigation observer for a 3D bipedal robot using the theory of invariant observer design. Aided inertial navigation is fundamentally a nonlinear observer design problem; thus, current solutions are based on approximations of the system dynamics, such as an…

2018

Hybrid Contact Preintegration for Visual-Inertial-Contact State Estimation Using Factor Graphs

IROS 2018poster

The factor graph framework is a convenient modeling technique for robotic state estimation where states are represented as nodes, and measurements are modeled as factors. When designing a sensor fusion framework for legged robots, one often has access to visual, inertial, joint encoder, and contact…

Cited by 57SourceScholar
2018

Legged Robot State-Estimation Through Combined Forward Kinematic and Preintegrated Contact Factors

ICRA 2018poster

State-of-the-art robotic perception systems have achieved sufficiently good performance using Inertial Measurement Units (IMUs), cameras, and nonlinear optimization techniques, that they are now being deployed as technologies. However, many of these methods rely significantly on vision and often fai…

Cited by 66SourceScholar
2017

Supervised learning for stabilizing underactuated bipedal robot locomotion, with outdoor experiments on the wave field

ICRA 2017poster

Supervised learning is used to build a control policy for robust, stable, dynamic walking of an underactuated bipedal robot. The training and testing sets consist of controllers based on a full dynamic model, virtual constraints, and parameter optimization to meet torque limits, friction cone, and e…

Cited by 87SourceScholar