Kai Yuanqing Xiao

dblp:295/5349 · DBLP profile ↗
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4ranked-venue papers
2as first author
2since 2021 · last 2022
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 4 · 2 first-author · 2 since 2021

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Artificial intelligence
4 papers
Trustworthy machine learning · 86% Image recognition and object detection · 11% 3D vision · 4%
Software engineering, system software, and programming languages
1 paper
Program verification · 100%

Topics — the 9 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Machine learning › Trustworthy machine learning
robustness
1.842022
3DB: A Framework for Debugging Computer Vision Models · NeurIPS 2022
Noise or Signal: The Role of Image Backgrounds in Object Recognition · ICLR 2021
Training for Faster Adversarial Robustness Verification via Inducing ReLU Stability · ICLR (Poster) 2019
Machine learning › Trustworthy machine learning
interpretability
0.612022
3DB: A Framework for Debugging Computer Vision Models · NeurIPS 2022
Machine learning › Trustworthy machine learning › dataset bias
background bias
0.512021
Noise or Signal: The Role of Image Backgrounds in Object Recognition · ICLR 2021
Computer vision › Image recognition and object detection
object recognition
0.512021
Noise or Signal: The Role of Image Backgrounds in Object Recognition · ICLR 2021
Machine learning › Trustworthy machine learning › robustness › model robustness evaluation
adversarial robustness evaluation
0.412019
Evaluating Robustness of Neural Networks with Mixed Integer Programming · ICLR (Poster) 2019
Machine learning › Trustworthy machine learning › robustness › certified robustness
certified adversarial robustness
0.412019
Training for Faster Adversarial Robustness Verification via Inducing ReLU Stability · ICLR (Poster) 2019
Machine learning › Trustworthy machine learning › robustness
neural network verification
0.412019
Evaluating Robustness of Neural Networks with Mixed Integer Programming · ICLR (Poster) 2019
Program verification
neural network verification
0.412019
Training for Faster Adversarial Robustness Verification via Inducing ReLU Stability · ICLR (Poster) 2019
Computer vision › 3D vision
photorealistic simulation
0.212022
3DB: A Framework for Debugging Computer Vision Models · NeurIPS 2022

Methods — techniques the papers use, named apart from their topics

adversarial training · 0.8ReLU stability · 0.8photorealistic simulation · 0.6object recognition · 0.5background analysis · 0.5mixed integer programming · 0.4
YearPublicationVenuePosition
2022 3DB: A Framework for Debugging Computer Vision Models
abstract
We introduce 3DB: an extendable, unified framework for testing and debugging vision models using photorealistic simulation. We demonstrate, through a wide range of use cases, that 3DB allows users to discover vulnerabilities in computer vision systems and gain insights into how models make decisions. 3DB captures and generalizes many robustness analyses from prior work, and enables one to study their interplay. Finally, we find that the insights generated by the system transfer to the physical world. 3DB will be released as a library alongside a set of examples and documentation. We attach 3DB to the submission.
Guillaume Leclerc, Hadi Salman, Andrew Ilyas, Sai Vemprala, Logan Engstrom, Vibhav Vineet, Kai Yuanqing Xiao, Pengchuan Zhang, Shibani Santurkar, Greg Yang, Ashish Kapoor, Aleksander Madry
NeurIPS7
2021 Noise or Signal: The Role of Image Backgrounds in Object Recognition
Kai Yuanqing Xiao, Logan Engstrom, Andrew Ilyas, Aleksander Madry
ICLR1
2019 Evaluating Robustness of Neural Networks with Mixed Integer Programming
Vincent Tjeng, Kai Yuanqing Xiao, Russ Tedrake
ICLR (Poster)2
2019 Training for Faster Adversarial Robustness Verification via Inducing ReLU Stability
Kai Yuanqing Xiao, Vincent Tjeng, Nur Muhammad Shafiullah, Aleksander Madry
ICLR (Poster)1