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RAG

Retrieval-Augmented Generation (RAG) is a task that combines the strengths of both retrieval-based models and generation-based models. In this approach, a retrieval system selects relevant documents or passages from a large corpus, and a generation model, typically a neural language model, uses the retrieved information to generate a response. This method enhances the accuracy and coherence of generated text, especially in tasks requiring detailed knowledge or long context handling.

RAG is particularly useful in open-domain question answering, knowledge-grounded dialogue, and summarization tasks. The retrieval step helps the model to access and incorporate external information, making it less reliant on memorized knowledge and better suited for generating responses based on the latest or domain-specific information.

The performance of RAG systems is usually measured using metrics such as precision, recall, F1 score, BLEU score, and exact match. Some popular datasets for evaluating RAG models include Natural Questions, MS MARCO, TriviaQA, and SQuAD.

Papers

Showing 151160 of 2111 papers

TitleStatusHype
MCTS-RAG: Enhancing Retrieval-Augmented Generation with Monte Carlo Tree SearchCode2
Blended RAG: Improving RAG (Retriever-Augmented Generation) Accuracy with Semantic Search and Hybrid Query-Based RetrieversCode2
LLM-based SPARQL Query Generation from Natural Language over Federated Knowledge GraphsCode2
Enhancing Autonomous Driving Systems with On-Board Deployed Large Language ModelsCode2
LongEmbed: Extending Embedding Models for Long Context RetrievalCode2
Language Model Powered Digital Biology with BRADCode2
Beyond Text: Optimizing RAG with Multimodal Inputs for Industrial ApplicationsCode2
LevelRAG: Enhancing Retrieval-Augmented Generation with Multi-hop Logic Planning over Rewriting Augmented SearchersCode2
LitLLM: A Toolkit for Scientific Literature ReviewCode2
Dynamic Parametric Retrieval Augmented Generation for Test-time Knowledge EnhancementCode2
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