Alert button
Picture for Yuanmeng Yan

Yuanmeng Yan

Alert button

Disentangling Confidence Score Distribution for Out-of-Domain Intent Detection with Energy-Based Learning

Add code
Bookmark button
Alert button
Oct 17, 2022
Yanan Wu, Zhiyuan Zeng, Keqing He, Yutao Mou, Pei Wang, Yuanmeng Yan, Weiran Xu

Figure 1 for Disentangling Confidence Score Distribution for Out-of-Domain Intent Detection with Energy-Based Learning
Figure 2 for Disentangling Confidence Score Distribution for Out-of-Domain Intent Detection with Energy-Based Learning
Figure 3 for Disentangling Confidence Score Distribution for Out-of-Domain Intent Detection with Energy-Based Learning
Figure 4 for Disentangling Confidence Score Distribution for Out-of-Domain Intent Detection with Energy-Based Learning
Viaarxiv icon

Rethink about the Word-level Quality Estimation for Machine Translation from Human Judgement

Add code
Bookmark button
Alert button
Sep 13, 2022
Zhen Yang, Fandong Meng, Yuanmeng Yan, Jie Zhou

Figure 1 for Rethink about the Word-level Quality Estimation for Machine Translation from Human Judgement
Figure 2 for Rethink about the Word-level Quality Estimation for Machine Translation from Human Judgement
Figure 3 for Rethink about the Word-level Quality Estimation for Machine Translation from Human Judgement
Figure 4 for Rethink about the Word-level Quality Estimation for Machine Translation from Human Judgement
Viaarxiv icon

InstructionNER: A Multi-Task Instruction-Based Generative Framework for Few-shot NER

Add code
Bookmark button
Alert button
Mar 08, 2022
Liwen Wang, Rumei Li, Yang Yan, Yuanmeng Yan, Sirui Wang, Wei Wu, Weiran Xu

Figure 1 for InstructionNER: A Multi-Task Instruction-Based Generative Framework for Few-shot NER
Figure 2 for InstructionNER: A Multi-Task Instruction-Based Generative Framework for Few-shot NER
Figure 3 for InstructionNER: A Multi-Task Instruction-Based Generative Framework for Few-shot NER
Figure 4 for InstructionNER: A Multi-Task Instruction-Based Generative Framework for Few-shot NER
Viaarxiv icon

Bridge to Target Domain by Prototypical Contrastive Learning and Label Confusion: Re-explore Zero-Shot Learning for Slot Filling

Add code
Bookmark button
Alert button
Oct 07, 2021
Liwen Wang, Xuefeng Li, Jiachi Liu, Keqing He, Yuanmeng Yan, Weiran Xu

Figure 1 for Bridge to Target Domain by Prototypical Contrastive Learning and Label Confusion: Re-explore Zero-Shot Learning for Slot Filling
Figure 2 for Bridge to Target Domain by Prototypical Contrastive Learning and Label Confusion: Re-explore Zero-Shot Learning for Slot Filling
Figure 3 for Bridge to Target Domain by Prototypical Contrastive Learning and Label Confusion: Re-explore Zero-Shot Learning for Slot Filling
Figure 4 for Bridge to Target Domain by Prototypical Contrastive Learning and Label Confusion: Re-explore Zero-Shot Learning for Slot Filling
Viaarxiv icon

Novel Slot Detection: A Benchmark for Discovering Unknown Slot Types in the Task-Oriented Dialogue System

Add code
Bookmark button
Alert button
May 29, 2021
Yanan Wu, Zhiyuan Zeng, Keqing He, Hong Xu, Yuanmeng Yan, Huixing Jiang, Weiran Xu

Figure 1 for Novel Slot Detection: A Benchmark for Discovering Unknown Slot Types in the Task-Oriented Dialogue System
Figure 2 for Novel Slot Detection: A Benchmark for Discovering Unknown Slot Types in the Task-Oriented Dialogue System
Figure 3 for Novel Slot Detection: A Benchmark for Discovering Unknown Slot Types in the Task-Oriented Dialogue System
Figure 4 for Novel Slot Detection: A Benchmark for Discovering Unknown Slot Types in the Task-Oriented Dialogue System
Viaarxiv icon

Modeling Discriminative Representations for Out-of-Domain Detection with Supervised Contrastive Learning

Add code
Bookmark button
Alert button
May 29, 2021
Zhiyuan Zeng, Keqing He, Yuanmeng Yan, Zijun Liu, Yanan Wu, Hong Xu, Huixing Jiang, Weiran Xu

Figure 1 for Modeling Discriminative Representations for Out-of-Domain Detection with Supervised Contrastive Learning
Figure 2 for Modeling Discriminative Representations for Out-of-Domain Detection with Supervised Contrastive Learning
Figure 3 for Modeling Discriminative Representations for Out-of-Domain Detection with Supervised Contrastive Learning
Figure 4 for Modeling Discriminative Representations for Out-of-Domain Detection with Supervised Contrastive Learning
Viaarxiv icon

ConSERT: A Contrastive Framework for Self-Supervised Sentence Representation Transfer

Add code
Bookmark button
Alert button
May 25, 2021
Yuanmeng Yan, Rumei Li, Sirui Wang, Fuzheng Zhang, Wei Wu, Weiran Xu

Figure 1 for ConSERT: A Contrastive Framework for Self-Supervised Sentence Representation Transfer
Figure 2 for ConSERT: A Contrastive Framework for Self-Supervised Sentence Representation Transfer
Figure 3 for ConSERT: A Contrastive Framework for Self-Supervised Sentence Representation Transfer
Figure 4 for ConSERT: A Contrastive Framework for Self-Supervised Sentence Representation Transfer
Viaarxiv icon