SOTAVerified

Graph Learning

Graph learning is a branch of machine learning that focuses on the analysis and interpretation of data represented in graph form. In this context, a graph is a collection of nodes (or vertices) and edges, where nodes represent entities and edges represent the relationships or interactions between these entities. This structure is particularly useful for modeling complex networks found in various domains such as social networks, biological networks, and communication networks.

Graph learning leverages the relationships and structures within the graph to learn and make predictions. It includes techniques like graph neural networks (GNNs), which extend the concept of neural networks to handle graph-structured data. These models are adept at capturing the dependencies and influence of connected nodes, leading to more accurate predictions in scenarios where relationships play a key role.

Key applications of graph learning include recommender systems, drug discovery, social network analysis, and fraud detection. By utilizing the inherent structure of graph data, graph learning algorithms can uncover deep insights and patterns that are not apparent with traditional machine learning approaches.

Papers

Showing 381390 of 1570 papers

TitleStatusHype
Incomplete Graph Learning: A Comprehensive SurveyCode0
Hybrid Micro/Macro Level Convolution for Heterogeneous Graph LearningCode0
Collaborative Similarity Embedding for Recommender SystemsCode0
Homomorphism Counts as Structural Encodings for Graph LearningCode0
How to learn a graph from smooth signalsCode0
arXiv4TGC: Large-Scale Datasets for Temporal Graph ClusteringCode0
Highly Confident Local Structure Based Consensus Graph Learning for Incomplete Multi-View ClusteringCode0
A Graph Dynamics Prior for Relational InferenceCode0
Higher-Order Graph DatabasesCode0
Are Graph Embeddings the Panacea? An Empirical Survey from the Data Fitness PerspectiveCode0
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Benchmark Results

#ModelMetricClaimedVerifiedStatus
1HaloGraphNetR^20.97Unverified