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Edward L. Zhu

5 accepted papers

2024

Learning Model Predictive Control with Error Dynamics Regression for Autonomous Racing

ICRA 2024poster

This work presents a novel Learning Model Predictive Control (LMPC) strategy for autonomous racing at the handling limit that can iteratively explore and learn unknown dynamics in high-speed operational domains. We start from existing LMPC formulations and modify the system dynamics learning method.…

Cited by 9SourcecodeScholar
2023

A Gaussian Process Model for Opponent Prediction in Autonomous Racing

IROS 2023

In head-to-head racing, performing tightly con-strained, but highly rewarding maneuvers, such as overtaking, require an accurate model of interactive behavior of the opposing target vehicle (TV). We propose to construct a prediction model given data of the TV from previous races. In particular, a on

Cited by 20SourcecodeScholar
2023

A Sequential Quadratic Programming Approach to the Solution of Open-Loop Generalized Nash Equilibria

ICRA 2023poster

In this work, we propose a numerical method for the solution of local generalized Nash equilibria (GNE) for the class of open-loop general-sum dynamic games for agents with nonlinear dynamics and constraints. In particular, we formulate a sequential quadratic programming (SQP) approach which require…

Cited by 28SourcecodeScholar
2021

Collision Avoidance in Tightly-Constrained Environments without Coordination: a Hierarchical Control Approach

ICRA 2021poster

We present a hierarchical control approach for maneuvering an autonomous vehicle (AV) in tightly-constrained environments where other moving AVs and/or human driven vehicles are present. A two-level hierarchy is proposed: a high-level data-driven strategy predictor and a lower-level model-based feed…

Cited by 26SourceScholar
2017

Inclined surface locomotion strategies for spherical tensegrity robots

IROS 2017poster

This paper presents a new teleoperated spherical tensegrity robot capable of performing locomotion on steep inclined surfaces. With a novel control scheme centered around the simultaneous actuation of multiple cables, the robot demonstrates robust climbing on inclined surfaces in hardware experiment…

Cited by 47SourceScholar