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Jun Zeng

15 accepted papers

2025

Self-Supervised Traversability Learning With Online Prototype Adaptation for Off-Road Autonomous Driving

RA-L 2025

Achieving reliable and safe autonomous driving in off-road environments requires accurate and efficient terrain traversability analysis. However, this task faces several challenges, including the scarcity of large-scale datasets tailored for off-road scenarios, the high cost and potential errors of

Cited by 4SourceScholar
2023

Distantly-Supervised Named Entity Recognition with Adaptive Teacher Learning and Fine-Grained Student Ensemble

AAAI 2023technical

Distantly-Supervised Named Entity Recognition (DS-NER) effectively alleviates the data scarcity problem in NER by automatically generating training samples. Unfortunately, the distant supervision may induce noisy labels, thus undermining the robustness of the learned models and restricting the pract…

2023

Velocity Obstacle for Polytopic Collision Avoidance for Distributed Multi-Robot Systems

RA-L 2023

Obstacle avoidance for multi-robot navigation with polytopic shapes is challenging. Existing works simplify the system dynamics or consider it as a convex or non-convex optimization problem with positive distance constraints between robots, which limits real-time performance and scalability. Additio

Cited by 24SourceScholar
2023

Walking in Narrow Spaces: Safety-Critical Locomotion Control for Quadrupedal Robots with Duality-Based Optimization

IROS 2023poster

This paper presents a safety-critical locomotion control framework for quadrupedal robots. Our goal is to enable quadrupedal robots to safely navigate in cluttered environments. To tackle this, we introduce exponential Discrete Control Barrier Functions (exponential DCBFs) with duality-based obstacl…

Cited by 17SourcecodeScholar
2022

Adapting Rapid Motor Adaptation for Bipedal Robots

IROS 2022poster

Recent advances in legged locomotion have en-abled quadrupeds to walk on challenging terrains. However, bipedal robots are inherently more unstable and hence it's harder to design walking controllers for them. In this work, we leverage recent advances in rapid adaptation for locomotion control, and…

Cited by 59SourcecodeScholar
2022

Autonomous Racing with Multiple Vehicles using a Parallelized Optimization with Safety Guarantee using Control Barrier Functions

ICRA 2022poster

This paper presents a novel planning and control strategy for competing with multiple vehicles in a car racing scenario. The proposed racing strategy switches between two modes. When there are no surrounding vehicles, a learning-based model predictive control (MPC) trajectory planner is used to guar…

Cited by 36SourcecodeScholar
2022

Bayesian Optimization Meets Hybrid Zero Dynamics: Safe Parameter Learning for Bipedal Locomotion Control

ICRA 2022poster

In this paper, we propose a multi-domain control parameter learning framework that combines Bayesian Optimization (BO) and Hybrid Zero Dynamics (HZD) for locomotion control of bipedal robots. We leverage BO to learn the control parameters used in the HZD-based controller. The learning process is fir…

Cited by 17SourceScholar
2022

Bridging Model-based Safety and Model-free Reinforcement Learning through System Identification of Low Dimensional Linear Models

RSS 2022poster

Bridging model-based safety and model-free reinforcement learning (RL) for dynamic robots is appealing since model-based methods are able to provide formal safety guarantees, while RL-based methods are able to exploit the robot agility by learning from the full-order system dynamics. However, curren…

Cited by 22SourcePDFScholar
2022

Collaborative Navigation and Manipulation of a Cable-Towed Load by Multiple Quadrupedal Robots

RA-L 2022

This letter tackles the problem of robots collaboratively towing a load with cables to a specified goal location while avoiding collisions in real time. The introduction of cables (as opposed to rigid links) enables the robotic team to travel through narrow spaces by changing its intrinsic dimension

Cited by 35SourceScholar
2022

NeuroSchedule: A Novel Effective GNN-based Scheduling Method for High-level Synthesis

NeurIPS 2022accept

High-level synthesis (HLS) is widely used for transferring behavior-level specifications into circuit-level implementations. As a critical step in HLS, scheduling arranges the execution order of operations for enhanced performance. However, existing scheduling methods suffer from either exponential…

Cited by 2SourcePDFScholar
2022

Safety-Critical Control and Planning for Obstacle Avoidance between Polytopes with Control Barrier Functions

ICRA 2022poster

Obstacle avoidance between polytopes is a chal-lenging topic for optimal control and optimization-based tra-jectory planning problems. Existing work either solves this problem through mixed-integer optimization, relying on simpli-fication of system dynamics, or through model predictive control with…

Cited by 82SourcecodeScholar
2021

Robotic Guide Dog: Leading a Human with Leash-Guided Hybrid Physical Interaction

ICRA 2021poster

An autonomous robot that is able to physically guide humans through narrow and cluttered spaces could be a big boon to the visually-impaired. Most prior robotic guiding systems are based on wheeled platforms with large bases with actuated rigid guiding canes. The large bases and the actuated arms li…

Cited by 116SourceScholar
2020

CLUE: A Chinese Language Understanding Evaluation Benchmark

COLING 2020main

The advent of natural language understanding (NLU) benchmarks for English, such as GLUE and SuperGLUE allows new NLU models to be evaluated across a diverse set of tasks. These comprehensive benchmarks have facilitated a broad range of research and applications in natural language processing (NLP).…

2020

Differential Flatness Based Path Planning With Direct Collocation on Hybrid Modes for a Quadrotor With a Cable-Suspended Payload

RA-L 2020

Generating agile maneuvers for a quadrotor with a cable-suspended load is a challenging problem. State-of-the-art approaches often need significant computation time and complex parameter tuning. We use a coordinate-free geometric formulation and exploit a differential flatness based hybrid model of

Cited by 67SourceScholar
2020

Dynamic Legged Manipulation of a Ball Through Multi-Contact Optimization

IROS 2020poster

The feet of robots are typically used to design locomotion strategies, such as balancing, walking, and running. However, they also have great potential to perform manipulation tasks. In this paper, we propose a model predictive control (MPC) framework for a quadrupedal robot to dynamically balance o…

Cited by 19SourceScholar