Challenge: Distant supervision is an important paradigm for automatically extracting relations . but the examples collected can be noisy and pose significant challenge for labeling .
Approach: They propose a method to predict whether two entities participate in a relation at a given time spot.
Outcome: The proposed model performs better in WIKI-TIME and NYT-10 datasets compared with the best existing models . the proposed model is based on a dataset with a valid period of a certain relation of two entities in the knowledge base .

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Combining Distant and Direct Supervision for Neural Relation Extraction (N19-1)

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Challenge: Existing methods to train relation extraction with distant supervision use noisy labels and implicitly assumes that all the KB facts are mentioned in the text.
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Improving Temporal Relation Extraction with a Globally Acquired Statistical Resource (N18-1)

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Challenge: Existing temporal extraction systems that extract temporal relations can be improved by using a resource that provides prior knowledge of the temporal order that events usually follow.
Approach: They propose to use a probabilistic knowledge base acquired in the news domain to extract temporal relations between events from the New York Times articles over a 20-year span.
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A Dataset for Inter-Sentence Relation Extraction using Distant Supervision (L18-1)

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Challenge: Existing methods for intra-sentence relation extraction use a distance supervision method to extract relations between entities.
Approach: They propose a benchmark dataset for the task of inter-sentence relation extraction using relations previously used for intra-sentent relation extraction.
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An Improved Neural Baseline for Temporal Relation Extraction (D19-1)

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Challenge: Existing datasets are small and/or have low inter-annotator agreements.
Approach: They propose a new neural system that achieves 10% absolute accuracy improvement over the previous best system.
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Revisiting Distant Supervision for Relation Extraction (L18-1)

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Challenge: Existing approaches for relation extraction (RE) use supervised learning on relation-specific training data, which is expensive to acquire.
Approach: They propose to use a new testing dataset to re-examine distant supervision approaches . they aim to draw new conclusions based on the new testing data .
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Domain Knowledge Empowered Structured Neural Net for End-to-End Event Temporal Relation Extraction (2020.emnlp-main)

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Challenge: Existing approaches to extract event temporal relations from text data are limited by hard constraints and large datasets.
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Domain Adapted Distant Supervision for Pedagogically Motivated Relation Extraction (2020.lrec-1)

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Challenge: Existing systems for question generation based on shallow linguistic information at text level generate questions for reading comprehension.
Approach: They propose a relation extraction system that extracts pedagogically motivated relation types from a text to generate questions for reading comprehension.
Outcome: The proposed system extracts pedagogically motivated relations from a text . it performs better on the subset of relations suitable for pedagical purposes.
Enhanced Distant Supervision with State-Change Information for Relation Extraction (2022.lrec-1)

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Challenge: Existing methods for enhancing distant supervision with state-change information for relation extraction are limited.
Approach: They propose a method for enhancing distant supervision with state-change information for relation extraction by adding temporal information to a curation dataset.
Outcome: The proposed method reduces noise when used for static relation extraction and can be used to train a relation-extraction system that detects a change of state in relations.
Label-Free Distant Supervision for Relation Extraction via Knowledge Graph Embedding (D18-1)

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Challenge: Existing methods to generate large scale labeled data for relation extraction produce noisy relation labels when there are multiple relationships between entities.
Approach: They propose a method which assumes that a pair of entities appears in a Knowledge Graph and trains a relation classifier.
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Distant Supervised Relation Extraction with Separate Head-Tail CNN (D19-55)

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Challenge: Distant supervised relation extraction suffers from mislabeling problem due to strong assumption . et al., 2009: distant supervision can be used to extract relations between entities .
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