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arXiv research

A locally-built, LLM-digested index of recent arXiv papers in quant finance, geometry/topology, and statistical ML — keyword search served straight from SQLite on this machine.

169,051 papers · 148 categories

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110221331441 · Jun 202019922001200920182026
48 results for RDF Knowledge Graphs

A new framework for knowledge graph embedding using sheaves.

problem Learning representations for entities and relations in knowledge graphs.
method Using cellular sheaves to describe knowledge graph embeddings with consistency constraints.
result A generalized framework for reasoning about knowledge graph embedding models.

KGNN-LS improves recommender systems using knowledge graphs and label smoothness.

problem Improving recommender systems through better user-item embeddings.
method KGNN-LS combines knowledge graphs, user-specific embeddings, and label smoothness regularization.
result KGNN-LS outperforms state-of-the-art baselines and handles cold-start scenarios.

ZSL-KG learns class representations from common sense knowledge graphs.

problem Predicting classes without labeled examples using semantic class representations.
method TrGCN, a novel transformer graph convolutional network, embeds nodes from common sense knowledge graphs in a vector space.
result ZSL-KG improves over existing methods on five out of six zero-shot benchmark datasets.

This study evaluates a health knowledge graph for robustness in EHRs.

problem Evaluate robustness of a health knowledge graph in EHRs.
method Analyze sample size, unmeasured confounders, and non-linear functions.
result Identify sample size and unmeasured confounders as major sources of error.

Paper investigates neural query graph ranking for complex question answering over knowledge graphs.

problem Improving neural models for complex question answering over knowledge graphs.
method Experimented with six ranking models, proposed a self-attention based slot matching model.
result Proposed model outperforms other models on DBpedia QA datasets.

This work proposes a hybrid method for error detection in noisy Knowledge Graphs.

problem Error detection in noisy Knowledge Graphs.
method Hybrid and modular approach combining path ranking and representation learning.
result Hybrid method outperforms individual methods on benchmarks and real-world dataset.

This work benchmarks neural embeddings for link prediction in evolving knowledge graphs.

problem Evaluating the robustness of neural embeddings in changing knowledge graphs.
method Proposes an open-source evaluation pipeline using relation-centric connectivity measures.
result Demonstrates the importance of simulating embedding accuracy for frequently updated knowledge graphs.

HAKE embeds entities in polar coordinates to model semantic hierarchies in knowledge graphs.

problem Lack of modeling semantic hierarchies in knowledge graph embeddings.
method HAKE embeds entities in a polar coordinate system, where the radial coordinate represents hierarchy levels and the angular coordinate distinguishes entities at the same level.
result HAKE significantly outperforms existing methods on link prediction tasks in knowledge graphs.

pLogicNet combines logic rules and embeddings for efficient knowledge graph reasoning.

problem Efficiently predicting missing facts in knowledge graphs.
method Combines Markov Logic Networks with knowledge graph embeddings using variational EM algorithm.
result pLogicNet outperforms traditional methods on multiple knowledge graphs.

Improved GCNNs tackle noisy knowledge graphs for better link prediction.

problem Link prediction on noisy biomedical knowledge graphs.
method Regularized attention mechanism for GCNNs, interpretable visualization methods.
result Improved performance on noisy datasets, automated denoising potential.

RAW-Explainer generates interpretable subgraph explanations for link predictions in knowledge graphs.

problem Interpreting GNN predictions for link prediction in heterogeneous settings is challenging.
method RAW-Explainer uses random walk objective and neural network to generate connected, concise subgraph explanations.
result RAW-Explainer strikes a balance between explanation quality and computational efficiency.

Paper proposes unsupervised knowledge graph alignment with adversarial learning.

problem Aligning knowledge graphs from different sources or languages without large amounts of aligned triplets.
method Adversarial learning framework to align entity and relation embeddings, with mutual information regularization.
result Framework effectively aligns knowledge graphs in unsupervised and weakly-supervised settings.

Survey of methods to incorporate external knowledge into stock price prediction.

problem Challenges in predicting stock prices due to market volatility and non-linearity.
method Survey of methods for acquiring and incorporating external knowledge into stock price prediction models.
result Systematic synthesis of previous studies on external knowledge types and their application in stock price prediction.

Improved knowledge graph embedding using taxonomic information.

problem Learning about domains in knowledge graphs using embedding models.
method Minimal modifications to existing knowledge graph completion methods to incorporate taxonomic information.
result Our model is fully expressive, respecting subclass and subproperty information.

This paper defines resilience in knowledge graph embeddings and surveys existing works.

problem Challenges in knowledge graph embedding models, including noise, missing information, distribution shift, and adversarial attacks.
method Unified definition of resilience, formalization in the context of knowledge graphs, systematic survey of existing works.
result Most existing works focus on robustness, leaving other aspects of resilience unexplored.

The study categorizes knowledge graph relations and explains their embedding representations.

problem Understanding how knowledge graph relation representations capture semantic information.
method Categorizing knowledge graph relations into three types and deriving explicit requirements for their representations.
result Empirical properties of relation representations and the performance of methods are justified by the analysis.

Semantic TrueLearn uses semantic graphs to improve educational recommendation systems.

problem Challenges in handling semantic and hierarchical structure in knowledge areas.
method Introduces a novel learner model that exploits semantic relatedness between knowledge components using a Wikipedia link graph.
result Achieves statistically significant improvements in predictive performance for educational engagement.

We model GitHub interactions as a temporal knowledge graph for software engineering questions.

problem Insufficient performance of existing temporal models on extrapolated queries and time prediction.
method Introduced an extension to current temporal models using relative temporal information.
result Improved performance on extrapolated queries and time prediction.

A novel fact-checking method using debate dynamics on knowledge graphs.

problem Fact-checking on knowledge graphs with user comprehension and interactive reasoning.
method Reinforcement learning agents debate on paths in the graph to classify facts as true or false.
result Interactive reasoning and user understanding of AI decisions on knowledge graphs.

Unified framework for learning from unlabeled and labeled data in knowledge graphs.

problem Scarcity of relation-specific labeled triples and ad hoc scoring functions limit model training and generalizability.
method Two-stage procedure: unsupervised pretraining over heterogeneous corpora followed by supervised learning with multiple relation types.
result Established a nonasymptotic risk bound quantifying the benefit of large-scale unlabeled data.

MKR uses knowledge graphs to enhance recommendation, improving performance across various categories.

problem Collaborative filtering's sparsity and cold start issues in real-world recommendation scenarios.
method MKR is a deep end-to-end framework that leverages knowledge graph embedding for recommendation, associating two tasks through cross&compress units.
result MKR achieves substantial gains in movie, book, music, and news recommendation, outperforming state-of-the-art baselines.

A method to reduce knowledge graph embedding models by binarizing parameters.

problem Large memory requirements for tensor factorization models in knowledge graph completion.
method Introducing a quantization function to binarize parameters of CP tensor decomposition.
result Successfully reduced model size by more than an order of magnitude while maintaining task performance.

PyKEEN 1.0 simplifies KGE model creation and optimization.

problem Training and evaluating knowledge graph embeddings (KGEs).
method Composes KGEMs with various interaction models, training approaches, and loss functions. Implements automatic memory optimization and extensive HPO functionalities.
result PyKEEN 1.0 streamlines KGE model creation and optimization.

The paper extends graph embedding models to handle multiple relations.

problem Link prediction in multi-relational networks.
method Generalized pseudo-Riemannian embedding models to multi-relational networks, considering relations as submanifolds.
result Validation of the approach in link prediction tasks, including knowledge graph completion and biological domain analysis.

AdaGCN uses AdaBoost to efficiently integrate high-order neighbor knowledge in graph neural networks.

problem Efficiently exploring and exploiting knowledge from different hops of neighbors in graph neural networks.
method Incorporates AdaBoost into graph convolutional networks to integrate knowledge from high-order neighbors.
result AdaGCN achieves state-of-the-art prediction performance across different graphs and label rates.

KEEN Universe provides reproducible and transferable knowledge graph embeddings.

problem Lack of reproducibility and transferability in KGE experiments.
method Developed an ecosystem with Python packages for reproducible and transferable KGEs.
result KEEN Universe facilitates sharing of trained KGE models across different fields.

RotatE embeds knowledge graphs using rotations in complex space for better link prediction.

problem Predicting missing links in knowledge graphs.
method RotatE models relations as rotations in complex vector space, using self-adversarial negative sampling.
result RotatE models and infers various relation patterns, outperforming existing models.