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Gerardo Bledt

8 accepted papers

2020

Robust Autonomous Navigation of a Small-Scale Quadruped Robot in Real-World Environments

IROS 2020poster

Animal-level agility and robustness in robots cannot be accomplished by solely relying on blind locomotion controllers. A significant portion of a robot’s ability to traverse terrain comes from reacting to the external world through visual sensing. However, embedding the sensors and compute that pro…

Cited by 45SourceScholar
2019

Implementing Regularized Predictive Control for Simultaneous Real-Time Footstep and Ground Reaction Force Optimization

IROS 2019poster

This work presents a successful implementation of a nonlinear optimization-based Regularized Predictive Control (RPC) for legged locomotion on the MIT Cheetah 3 robot platform. Footstep placements and ground reaction forces at the contact feet are simultaneously solved for over a prediction horizon…

Cited by 90SourceScholar
2019

Online Gait Transitions and Disturbance Recovery for Legged Robots via the Feasible Impulse Set

RA-L 2019

Gaits in legged robots are often hand tuned and time based, either explicitly or through an internal clock, for instance, in the form of central pattern generators. This strategy requires trial and error to identify leg timings, which may not be suitable in challenging terrains. In this letter, we i

Cited by 38SourceScholar
2018

Contact Model Fusion for Event-Based Locomotion in Unstructured Terrains

ICRA 2018poster

As legged robots are sent into unstructured environments, the ability to robustly manage contact transitions will be a critical skill. This paper introduces an approach to probabilistically fuse contact models, managing uncertainty in terrain geometry, dynamic modeling, and kinematics to improve the…

Cited by 198SourceScholar
2018

Dynamic Locomotion in the MIT Cheetah 3 Through Convex Model-Predictive Control

IROS 2018poster

This paper presents an implementation of model predictive control (MPC) to determine ground reaction forces for a torque-controlled quadruped robot. The robot dynamics are simplified to formulate the problem as convex optimization while still capturing the full 3D nature of the system. With the simp…

Cited by 852SourceScholar
2018

MIT Cheetah 3: Design and Control of a Robust, Dynamic Quadruped Robot

IROS 2018poster

This paper introduces a new robust, dynamic quadruped, the MIT Cheetah 3. Like its predecessor, the Cheetah 3 exploits tailored mechanical design to enable simple control strategies for dynamic locomotion and features high-bandwidth proprioceptive actuators to manage physical interaction with the en…

Cited by 880SourceScholar
2017

Policy-regularized model predictive control to stabilize diverse quadrupedal gaits for the MIT cheetah

IROS 2017poster

This paper introduces a new policy-regularized model-predictive control (PR-MPC) approach to automatically generate and stabilize a diverse set of quadrupedal gaits. Model-predictive methods offer great promise to address balance in dynamic robots, yet require the solution of challenging nonlinear o…

Cited by 125SourceScholar