SOTAVerified

Knowledge Graph Completion

Knowledge graphs $G$ are represented as a collection of triples $\{(h, r, t)\}\subseteq E\times R\times E$, where $E$ and $R$ are the entity set and relation set. The task of Knowledge Graph Completion is to either predict unseen relations $r$ between two existing entities: $(h, ?, t)$ or predict the tail entity $t$ given the head entity and the query relation: $(h, r, ?)$.

Source: One-Shot Relational Learning for Knowledge Graphs

Papers

Showing 176200 of 482 papers

TitleStatusHype
Pre-training Transformers for Knowledge Graph Completion0
Farspredict: A benchmark dataset for link prediction0
Knowledge Graphs: Opportunities and Challenges0
Enhancing Embedding Representations of Biomedical Data using Logic Knowledge0
Comprehensive Event Representations using Event Knowledge Graphs and Natural Language Processing0
Neural Compositional Rule Learning for Knowledge Graph ReasoningCode1
Knowledge Graph Completion with Counterfactual Augmentation0
Knowledge Graph Completion based on Tensor Decomposition for Disease Gene PredictionCode0
NNKGC: Improving Knowledge Graph Completion with Node NeighborhoodsCode0
Toward Degree Bias in Embedding-Based Knowledge Graph CompletionCode1
A Comprehensive Survey on Automatic Knowledge Graph Construction0
FFHR: Fully and Flexible Hyperbolic Representation for Knowledge Graph Completion0
A Pre-training Framework for Knowledge Graph Completion0
Interaction Order Prediction for Temporal Graphs0
Knowledge Graph Completion Method Combined With Adaptive Enhanced Semantic Information0
PubGraph: A Large-Scale Scientific Knowledge Graph0
Double Equivariance for Inductive Link Prediction for Both New Nodes and New Relation TypesCode0
Can Persistent Homology provide an efficient alternative for Evaluation of Knowledge Graph Completion Methods?Code0
Knowledge Reasoning via Jointly Modeling Knowledge Graphs and Soft Rules0
A Survey On Few-shot Knowledge Graph Completion with Structural and Commonsense Knowledge0
A Retrieve-and-Read Framework for Knowledge Graph Link PredictionCode1
Efficient Relation-aware Neighborhood Aggregation in Graph Neural Networks via Tensor DecompositionCode0
Pseudo-Riemannian Embedding Models for Multi-Relational Graph Representations0
Logic and Commonsense-Guided Temporal Knowledge Graph CompletionCode0
Relation-dependent Contrastive Learning with Cluster Sampling for Inductive Relation Prediction0
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Benchmark Results

#ModelMetricClaimedVerifiedStatus
1KBGATHits@1062.6Unverified
2HAKEHits@1054.2Unverified
3PKGCHits@1048.7Unverified
4KBATHits@146Unverified
#ModelMetricClaimedVerifiedStatus
1JMACMRR44.6Unverified
2AlignKGCMRR41.3Unverified
3SS-AGAMRR32.1Unverified
#ModelMetricClaimedVerifiedStatus
1JMACMRR71.7Unverified
2AlignKGCMRR69.4Unverified
3SS-AGAMRR35.3Unverified
#ModelMetricClaimedVerifiedStatus
1JMACMRR64.5Unverified
2AlignKGCMRR59.5Unverified
3SS-AGAMRR36.6Unverified
#ModelMetricClaimedVerifiedStatus
1HAKEHits@30.52Unverified
2KBGATHits@30.48Unverified
#ModelMetricClaimedVerifiedStatus
1KTUP (soft)Hits@1060.75Unverified
#ModelMetricClaimedVerifiedStatus
1KTUP (soft)Hits@1048.9Unverified