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Yuxiang Yang

30 accepted papers

2026

PromptEmo: Learning Emotion with Bilateral Textual Prompts in Multi-Domain Open-set Scenarios

AAAI 2026technical

Facial Expression Recognition (FER) is crucial to human-computer interaction. Existing cross-domain FER (CD-FER) methods mainly focus on single-source closed-set scenarios, transferring knowledge from a single source domain to a target domain with identical class sets. However, CD-FER faces two real

Cited by 0SourcePDFScholar
2025

Agile Continuous Jumping in Discontinuous Terrains

ICRA 2025

We focus on agile, continuous, and terrain-adaptive jumping of quadrupedal robots in discontinuous terrains such as stairs and stepping stones. Unlike single-step jumping, continuous jumping requires accurately executing highly dynamic motions over long horizons, which is challenging for existing ap

Cited by 17SourcecodeScholar
2025

BEVTrack: A Simple and Strong Baseline for 3D Single Object Tracking in Bird's-Eye View

IJCAI 2025

3D Single Object Tracking (SOT) is a fundamental task in computer vision and plays a critical role in applications like autonomous driving. However, existing algorithms often involve complex designs and multiple loss functions, making model training and deployment challenging. Furthermore, their rel

2025

DDPA-3DVG: Vision-Language Dual-Decoupling and Progressive Alignment for 3D Visual Grounding

IJCAI 2025

3D visual grounding aims to localize target objects in point clouds based on free-form natural language, which often describes both target and reference objects. Effective alignment between visual and text features is crucial for this task. However, existing two-stage methods that rely solely on obj

2025

Human2LocoMan: Learning Versatile Quadrupedal Manipulation with Human Pretraining

RSS 2025poster

Quadrupedal robots have demonstrated impressive locomotion capabilities in complex environments, but equipping them with autonomous versatile manipulation skills in a scalable way remains a significant challenge. In this work, we introduce a system that integrates data collection and imitation learn…

Cited by 0PDFcodeScholar
2025

Learning Multi-Agent Loco-Manipulation for Long-Horizon Quadrupedal Pushing

ICRA 2025

Recently, quadrupedal locomotion has achieved significant success, but their manipulation capabilities, particularly in handling large objects, remain limited, restricting their usefulness in demanding real-world applications such as search and rescue, construction, industrial automation, and room o

Cited by 24SourceScholar
2025

LocoTouch: Learning Dynamic Quadrupedal Transport with Tactile Sensing

CoRL 2025poster

Quadrupedal robots have demonstrated remarkable agility and robustness in traversing complex terrains. However, they struggle with dynamic object interactions, where contact must be precisely sensed and controlled. To bridge this gap, we present LocoTouch, a system that equips quadrupedal robots wit…

Cited by 0SourceScholar
2025

QuietPaw: Learning Quadrupedal Locomotion with Versatile Noise Preference Alignment

IROS 2025

When operating at their full capacity, quadrupedal robots can produce loud footstep noise, which can be disruptive in human-centered environments like homes, offices, and hospitals. As a result, balancing locomotion performance with noise constraints is crucial for the successful real-world deployme

Cited by 1SourceScholar
2025

Reinforced Learning Explicit Circuit Representations for Quantum State Characterization from Local Measurements

ICML 2025poster

Characterizing quantum states is essential for advancing many quantum technologies. Recently, deep neural networks have been applied to learn quantum states by generating compressed implicit representations. Despite their success in predicting properties of the states, these representations remain a…

Cited by 0SourcePDFScholar
2025

Sampling-based System Identification with Active Exploration for Legged Sim2Real Learning

CoRL 2025oral

Sim-to-real discrepancies hinder learning-based policies from achieving high-precision tasks in the real world. While Domain Randomization (DR) is commonly used to bridge this gap, it often relies on heuristics and can lead to overly conservative policies with degrading performance when not properly…

Cited by 0SourcecodeScholar
2025

UAWTrack: Universal 3D Single Object Tracking in Adverse Weather

AAAI 2025technical

3D single object tracking (3D SOT) in LiDAR point clouds is essential for autonomous driving. Most existing 3D SOT methods focus on clear weather, where point clouds are more defined. However, adverse weather conditions lead to sparser and noisier point clouds, significantly degrading tracking perfo…

2024

Active Neural Topological Mapping for Multi-Agent Exploration

RA-L 2024

This letter investigates the multi-agent cooperative exploration problem, which requires multiple agents to explore an unseen environment via sensory signals in a limited time. A popular approach to exploration tasks is to combine active mapping with planning. Metric maps capture the details of the

Cited by 13SourceScholar
2024

BEVNav: Robot Autonomous Navigation via Spatial-Temporal Contrastive Learning in Bird's-Eye View

RA-L 2024

Goal-driven mobile robot navigation in map-less environments requires effective state representations for reliable decision-making. Inspired by the favorable properties of Bird's-Eye View (BEV) in point clouds for visual perception, this paper introduces a novel navigation approach named BEVNav. It

Cited by 10SourceScholar
2024

LocoMan: Advancing Versatile Quadrupedal Dexterity with Lightweight Loco-Manipulators

IROS 2024poster

Quadrupedal robots have emerged as versatile agents capable of locomoting and manipulating in complex environments. Traditional designs typically rely on the robot’s inherent body parts or incorporate top-mounted arms for manipulation tasks. However, these configurations may limit the robot’s operat…

Cited by 13SourceScholar
2023

CAJun: Continuous Adaptive Jumping using a Learned Centroidal Controller

CoRL 2023poster

We present CAJun, a novel hierarchical learning and control framework that enables legged robots to jump continuously with adaptive jumping distances. CAJun consists of a high-level centroidal policy and a low-level leg controller. In particular, we use reinforcement learning (RL) to train the centr…

Cited by 30SourceScholar
2023

DMCL: Robot Autonomous Navigation via Depth Image Masked Contrastive Learning

IROS 2023poster

Achieving high performance in deep reinforcement learning relies heavily on the ability to obtain good state representations from pixel inputs. However, learning an observation-space-to-action-space mapping from high-dimensional inputs is challenging in reinforcement learning, particularly when deal…

Cited by 3SourceScholar
2023

GLT-T: Global-Local Transformer Voting for 3D Single Object Tracking in Point Clouds

AAAI 2023technical

Current 3D single object tracking methods are typically based on VoteNet, a 3D region proposal network. Despite the success, using a single seed point feature as the cue for offset learning in VoteNet prevents high-quality 3D proposals from being generated. Moreover, seed points with different impor…

2023

OSP2B: One-Stage Point-to-Box Network for 3D Siamese Tracking

IJCAI 2023poster

Two-stage point-to-box network acts as a critical role in the recent popular 3D Siamese tracking paradigm, which first generates proposals and then predicts corresponding proposal-wise scores. However, such a network suffers from tedious hyper-parameter tuning and task misalignment, limiting the tra…

2023

ST${2}$: Spatial-Temporal State Transformer for Crowd-Aware Autonomous Navigation

RA-L 2023

Empowering an intelligent agent with the ability of autonomous navigation in complex and dynamic environments is an important and active research topic in embodied artificial intelligence. In this letter, we address this challenging task from the view of exploiting both the spatial and temporal stat

Cited by 34SourceScholar
2022

APT-36K: A Large-scale Benchmark for Animal Pose Estimation and Tracking

NeurIPS 2022accept

Animal pose estimation and tracking (APT) is a fundamental task for detecting and tracking animal keypoints from a sequence of video frames. Previous animal-related datasets focus either on animal tracking or single-frame animal pose estimation, and never on both aspects. The lack of APT datasets hi…

2022

ISNet: Shape Matters for Infrared Small Target Detection

CVPR 2022poster

Infrared small target detection (IRSTD) refers to extracting small and dim targets from blurred backgrounds, which has a wide range of applications such as traffic management and marine rescue. Due to the low signal-to-noise ratio and low contrast, infrared targets are easily submerged in the backgr…

Cited by 353PDFcodeScholar
2022

Learning Semantics-Aware Locomotion Skills from Human Demonstration

CoRL 2022poster

The semantics of the environment, such as the terrain type and property, reveals important information for legged robots to adjust their behaviors. In this work, we present a framework that learns semantics-aware locomotion skills from perception for quadrupedal robots, such that the robot can trave…

Cited by 12SourceScholar
2022

SAR-to-Optical Image Translation via Neural Partial Differential Equations

IJCAI 2022poster

Synthetic Aperture Radar (SAR) becomes prevailing in remote sensing while SAR images are challenging to interpret by human visual perception due to the active imaging mechanism and speckle noise. Recent researches on SAR-to-optical image translation provide a promising solution and have attracted in…

Cited by 11SourcePDFScholar
2021

Fast and Efficient Locomotion via Learned Gait Transitions

CoRL 2021oral

We focus on the problem of developing energy efficient controllers for quadrupedal robots. Animals can actively switch gaits at different speeds to lower their energy consumption. In this paper, we devise a hierarchical learning framework, in which distinctive locomotion gaits and natural gait trans…

Cited by 108SourcecodeScholar
2020

ES-MAML: Simple Hessian-Free Meta Learning

ICLR 2020poster

We introduce ES-MAML, a new framework for solving the model agnostic meta learning (MAML) problem based on Evolution Strategies (ES). Existing algorithms for MAML are based on policy gradients, and incur significant difficulties when attempting to estimate second derivatives using backpropagation on…

Cited by 148SourcecodeScholar
2020

Rapidly Adaptable Legged Robots via Evolutionary Meta-Learning

IROS 2020poster

Learning adaptable policies is crucial for robots to operate autonomously in our complex and quickly changing world. In this work, we present a new meta-learning method that allows robots to quickly adapt to changes in dynamics. In contrast to gradient-based meta-learning algorithms that rely on sec…

Cited by 96SourceScholar
2019

Data Efficient Reinforcement Learning for Legged Robots

CoRL 2019

We present a model-based reinforcement learning framework for robot locomotion that achieves walking based on only 4.5 minutes of data collected on a quadruped robot. To accurately model the robot’s dynamics over a long horizon, we introduce a loss function that tracks the model’s prediction over mu

2019

OpenRoACH: A Durable Open-Source Hexapedal Platform with Onboard Robot Operating System (ROS)

ICRA 2019poster

OpenRoACH is a 15-cm 200-gram self-contained hexapedal robot with an onboard single-board computer. To our knowledge, it is the smallest legged robot with the capability of running the Robot Operating System (ROS) onboard. The robot is fully open sourced, uses accessible materials and off-the-shelf…

Cited by 13SourceScholar
2019

Provably Robust Blackbox Optimization for Reinforcement Learning

CoRL 2019

Interest in derivative-free optimization (DFO) and “evolutionary strategies” (ES) has recently surged in the Reinforcement Learning (RL) community, with growing evidence that they can match state of the art methods for policy optimization problems in Robotics. However, it is well known that DFO meth