Libo Weng

Orcid: 0000-0003-2496-6291

According to our database1, Libo Weng authored at least 15 papers between 2016 and 2023.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

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Bibliography

2023
A semantic-aware monocular projection model for accurate pose measurement.
Pattern Anal. Appl., November, 2023

Whether and how is a surveillance camera jittering? A ROR perception based framework and method.
Appl. Intell., October, 2023

An automatic verification method for vehicle line-pressing violation based on CNN and geometric projection.
J. Ambient Intell. Humaniz. Comput., March, 2023

A 3D graph convolutional networks model for 2D skeleton-based human action recognition.
IET Image Process., February, 2023

Traffic Sign Recognition Model Based on Small Object Detection.
Proceedings of the PRICAI 2023: Trends in Artificial Intelligence, 2023

Language Guided Graph Transformer for Skeleton Action Recognition.
Proceedings of the Neural Information Processing - 30th International Conference, 2023

ECDet: A Real-Time Vehicle Detection Network for CPU-Only Devices.
Proceedings of the Artificial Neural Networks and Machine Learning - ICANN 2023, 2023

2022
A Trajectory Evaluator by Sub-tracks for Detecting VOT-based Anomalous Trajectory.
ACM Trans. Knowl. Discov. Data, 2022

Traffic Scene Perception Based on Joint Object Detection and Semantic Segmentation.
Neural Process. Lett., 2022

2021
Vehicle Tire Text Reader: Text Spotting and Rectifying for Small, Curved, and Rotated Characters.
IEEE Trans. Instrum. Meas., 2021

Measuring Vehicle Profile Size: Lidar-Based System and K-Frame-Based Methodology.
Sensors, 2021

2019
Sparse graphs with smoothness constraints: Application to dimensionality reduction and semi-supervised classification.
Pattern Recognit., 2019

2018
Structured sparse graphs using manifold constraints for visual data analysis.
Neurocomputing, 2018

2016
Flexible constrained sparsity preserving embedding.
Pattern Recognit., 2016

Graph construction based on data self-representativeness and Laplacian smoothness.
Neurocomputing, 2016


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