Papers with paraphrase generation task

5 papers
Chinese Idiom Paraphrasing (2023.tacl-1)

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Challenge: Chinese idioms are hard to understand by children and non-native speakers due to their non-compositionality and metaphorical meaning.
Approach: They propose a task to rephrase idiom-containing sentences to non-idiomatic ones under the premise of preserving the original sentence’s meaning.
Outcome: The proposed method has better performance than baselines based on the established dataset.
CoSe-Co: Text Conditioned Generative CommonSense Contextualizer (2022.naacl-main)

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Challenge: Pre-trained language models (PTLMs) have been shown to perform well on natural language tasks.
Approach: They propose a commonsense contextualizer conditioned on sentences as input to make it generically usable in tasks involving natural language text.
Outcome: The proposed model improves on existing methods on CSQA, ARC, QASC and OBQA datasets.
Learning Semantic Sentence Embeddings using Sequential Pair-wise Discriminator (C18-1)

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Challenge: a novel method for obtaining sentence-level embeddings is proposed . the problem of obtaining a semantic embeddable sentence is at the core of understanding languages .
Approach: They propose a method for obtaining sentence-level embeddings by using a sequential encoder-decoder framework.
Outcome: The proposed method outperforms the state-of-the-art on a sentiment analysis task.
Don’t Change Me! User-Controllable Selective Paraphrase Generation (2021.eacl-main)

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Challenge: a new technique allows paraphrase generation to be user-controlled . a user looking for cheap hotels in New York would not find the other answer helpful .
Approach: They propose a method that provides a user with explicit tags that can be placed around any arbitrary segment of text to mean "don't change me!" they propose allowing user-controllable paraphrase generation by fine-tuning model that exhibits this behavior .
Outcome: The proposed technique is language agnostic and tested in English and Chinese.
SemPA: Improving Sentence Embeddings of Large Language Models through Semantic Preference Alignment (2026.findings-acl)

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Challenge: Existing sentence embedding methods rely on fixed prompt templates or involve modifications to the model architecture, compromising its generative capabilities.
Approach: They propose a sentence-level direct preference optimization approach that boosts the sentence representations while preserving the generative ability of LLMs.
Outcome: The proposed method improves representations of semantically meaningful vectors without sacrificing generation capability.

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