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Yurong You

24 accepted papers

2026

Counterfactual VLA: Self-Reflective Vision-Language-Action Model with Adaptive Reasoning

CVPR 2026

Recent reasoning-augmented Vision-Language-Action (VLA) models have improved the interpretability of end-to-end autonomous driving by generating intermediate reasoning traces. Yet these models primarily describe what they perceive and intend to do, rarely questioning whether their planned actions ar

Cited by 0SourceScholar
2026

Efficient Multi-Camera Tokenization with Triplanes for End-To-End Driving

ICRA 2026poster

Autoregressive Transformers are increasingly being deployed as end-to-end robot and autonomous vehicle (AV) policy architectures, owing to their scalability and potential to leverage internet-scale pretraining for generalization. Accordingly, tokenizing sensor data efficiently is paramount to ensuri…

2026

Latent Chain-of-Thought World Modeling for End-to-End Autonomous Driving

CVPR 2026

Recent Vision-Language-Action (VLA) models for autonomous driving explore inference-time reasoning as a way to improve driving performance and safety in challenging scenarios. Most prior work uses natural language to express chain-of-thought (CoT) reasoning before producing driving actions. However,

Cited by 0SourceScholar
2025

DreamDrive: Generative 4D Scene Modeling from Street View Images

ICRA 2025

Synthesizing photo-realistic visual observations from an ego vehicle's driving trajectory is a critical step towards scalable training of self-driving models. Reconstruction-based methods create 3D scenes from driving logs and synthesize geometry-consistent driving videos through neural rendering, b

Cited by 24SourceScholar
2025

Efficient Multi-Camera Tokenization With Triplanes for End-to-End Driving

RA-L 2025

Autoregressive Transformers are increasingly being deployed as end-to-end robot and autonomous vehicle (AV) policy architectures, owing to their scalability and potential to leverage internet-scale pretraining for generalization. Accordingly, tokenizing sensor data <italic xmlns:mml="http://www.w3.o

Cited by 5SourceScholar
2025

Extrapolated Urban View Synthesis Benchmark

ICCV 2025poster

Photorealistic simulators are essential for the training and evaluation of vision-centric autonomous vehicles (AVs). At their core is Novel View Synthesis (NVS), a crucial capability that generates diverse unseen viewpoints to accommodate the broad and continuous pose distribution of AVs. Recent adv…

2025

Language-Image Models with 3D Understanding

ICLR 2025poster

Multi-modal large language models (MLLMs) have shown incredible capabilities in a variety of 2D vision and language tasks. We extend MLLMs’ perceptual capabilities to ground and reason about images in 3-dimensional space. To that end, we first develop a large-scale pretraining dataset for 2D and 3D…

Cited by 15SourcePDFScholar
2025

STORM: Spatio-TempOral Reconstruction Model For Large-Scale Outdoor Scenes

ICLR 2025poster

We present STORM, a spatio-temporal reconstruction model designed for reconstructing dynamic outdoor scenes from sparse observations. Existing dynamic reconstruction methods often rely on per-scene optimization, dense observations across space and time, and strong motion supervision, resulting in le…

2024

Better Monocular 3D Detectors with LiDAR from the Past

ICRA 2024poster

Accurate 3D object detection is crucial to autonomous driving. Though LiDAR-based detectors have achieved impressive performance, the high cost of LiDAR sensors precludes their widespread adoption in affordable vehicles. Camera-based detectors are cheaper alternatives but often suffer inferior perfo…

Cited by 1SourcecodeScholar
2024

DiffuBox: Refining 3D Object Detection with Point Diffusion

NeurIPS 2024poster

Ensuring robust 3D object detection and localization is crucial for many applications in robotics and autonomous driving. Recent models, however, face difficulties in maintaining high performance when applied to domains with differing sensor setups or geographic locations, often resulting in poor lo…

2024

Pre-training LiDAR-based 3D Object Detectors through Colorization

ICLR 2024poster

Accurate 3D object detection and understanding for self-driving cars heavily relies on LiDAR point clouds, necessitating large amounts of labeled data to train. In this work, we introduce an innovative pre-training approach, Grounded Point Colorization (GPC), to bridge the gap between data and label…

2023

Reward Finetuning for Faster and More Accurate Unsupervised Object Discovery

NeurIPS 2023poster

Recent advances in machine learning have shown that Reinforcement Learning from Human Feedback (RLHF) can improve machine learning models and align them with human preferences. Although very successful for Large Language Models (LLMs), these advancements have not had a comparable impact in research…

2022

Depth Estimation Matters Most: Improving Per-Object Depth Estimation for Monocular 3D Detection and Tracking

ICRA 2022poster

Monocular image-based 3D perception has become an active research area in recent years owing to its applications in autonomous driving. Approaches to monocular 3D perception including detection and tracking, however, often yield inferior performance when compared to LiDAR-based techniques. Through s…

Cited by 24SourceScholar
2022

Exploiting Playbacks in Unsupervised Domain Adaptation for 3D Object Detection in Self-Driving Cars

ICRA 2022poster

Self-driving cars must detect other traffic participants like vehicles and pedestrians in 3D in order to plan safe routes and avoid collisions. State-of-the-art 3D object detectors, based on deep learning, have shown promising accuracy but are prone to over-fit domain idiosyncrasies, making them fai…

Cited by 25SourceScholar
2022

Hindsight is 20/20: Leveraging Past Traversals to Aid 3D Perception

ICLR 2022poster

Self-driving cars must detect vehicles, pedestrians, and other traffic participants accurately to operate safely. Small, far-away, or highly occluded objects are particularly challenging because there is limited information in the LiDAR point clouds for detecting them. To address this challenge, we l…

2022

Ithaca365: Dataset and Driving Perception Under Repeated and Challenging Weather Conditions

CVPR 2022poster

Advances in perception for self-driving cars have accelerated in recent years due to the availability of large-scale datasets, typically collected at specific locations and under nice weather conditions. Yet, to achieve the high safety requirement, these perceptual systems must operate robustly unde…

Cited by 53PDFScholar
2022

Learning To Detect Mobile Objects From LiDAR Scans Without Labels

CVPR 2022poster

Current 3D object detectors for autonomous driving are almost entirely trained on human-annotated data. Although of high quality, the generation of such data is laborious and costly, restricting them to a few specific locations and object types. This paper proposes an alternative approach entirely b…

Cited by 51PDFcodeScholar
2022

R4D: Utilizing Reference Objects for Long-Range Distance Estimation

ICLR 2022poster

Estimating the distance of objects is a safety-critical task for autonomous driving. Focusing on short-range objects, existing methods and datasets neglect the equally important long-range objects. In this paper, we introduce a challenging and under-explored task, which we refer to as Long-Range Dis…

Cited by 7SourcePDFScholar
2022

Unsupervised Adaptation from Repeated Traversals for Autonomous Driving

NeurIPS 2022accept

For a self-driving car to operate reliably, its perceptual system must generalize to the end-user's environment --- ideally without additional annotation efforts. One potential solution is to leverage unlabeled data (e.g., unlabeled LiDAR point clouds) collected from the end-users' environments (i.e…

2020

End-to-End Pseudo-LiDAR for Image-Based 3D Object Detection

CVPR 2020poster

Reliable and accurate 3D object detection is a necessity for safe autonomous driving. Although LiDAR sensors can provide accurate 3D point cloud estimates of the environment, they are also prohibitively expensive for many settings. Recently, the introduction of pseudo-LiDAR (PL) has led to a drastic…

Cited by 262PDFcodeScholar
2020

Pseudo-LiDAR++: Accurate Depth for 3D Object Detection in Autonomous Driving

ICLR 2020poster

Detecting objects such as cars and pedestrians in 3D plays an indispensable role in autonomous driving. Existing approaches largely rely on expensive LiDAR sensors for accurate depth information. While recently pseudo-LiDAR has been introduced as a promising alternative, at a much lower cost based s…

Cited by 515SourcecodeScholar
2020

Train in Germany, Test in the USA: Making 3D Object Detectors Generalize

CVPR 2020poster

In the domain of autonomous driving, deep learning has substantially improved the 3D object detection accuracy for LiDAR and stereo camera data alike. While deep networks are great at generalization, they are also notorious to overfit to all kinds of spurious artifacts, such as brightness, car sizes…

Cited by 215PDFcodeScholar
2019

Simple Black-box Adversarial Attacks

ICML 2019oral

We propose an intriguingly simple method for the construction of adversarial images in the black-box setting. In constrast to the white-box scenario, constructing black-box adversarial images has the additional constraint on query budget, and efficient attacks remain an open problem to date. With on…

2018

Resource Aware Person Re-Identification Across Multiple Resolutions

CVPR 2018poster

Not all people are equally easy to identify: color statistics might be enough for some cases while others might require careful reasoning about high- and low-level details. However, prevailing person re-identification(re-ID) methods use one-size-fits-all high-level embeddings from deep convolutional…