Adaptive utterance rewriting for conversational search

In a conversational context, a user converses with a system through a sequence of natural-language questions, i.e., utterances. Starting from a given subject, the conversation evolves through sequences of user utterances and system replies. The retrieval of documents relevant to an utterance is diff...

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Published inInformation processing & management Vol. 58; no. 6; p. 102682
Main Authors Mele, Ida, Muntean, Cristina Ioana, Nardini, Franco Maria, Perego, Raffaele, Tonellotto, Nicola, Frieder, Ophir
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 01.11.2021
Elsevier Science Ltd
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Online AccessGet full text
ISSN0306-4573
1873-5371
DOI10.1016/j.ipm.2021.102682

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Abstract In a conversational context, a user converses with a system through a sequence of natural-language questions, i.e., utterances. Starting from a given subject, the conversation evolves through sequences of user utterances and system replies. The retrieval of documents relevant to an utterance is difficult due to informal use of natural language in speech and the complexity of understanding the semantic context coming from previous utterances. We adopt the 2019 TREC Conversational Assistant Track (CAsT) framework to experiment with a modular architecture performing in order: (i) automatic utterance understanding and rewriting, (ii) first-stage retrieval of candidate passages for the rewritten utterances, and (iii) neural re-ranking of candidate passages. By understanding the conversational context, we propose adaptive utterance rewriting strategies based on the current utterance and the dialogue evolution of the user with the system. A classifier identifies those utterances lacking context information as well as the dependencies on the previous utterances. Experimentally, we evaluate the proposed architecture in terms of traditional information retrieval metrics at small cutoffs. Results demonstrate the effectiveness of our techniques, achieving an improvement up to 0.6512 (+201%) for P@1 and 0.4484 (+214%) for nDCG@3 w.r.t. the CAsT baseline. •We present conversational utterance rewriting approaches based on classification•Utterance classification identifies utterances lacking context and their dependencies•Experiments show that our strategies outperform the state-of-the-art techniques
AbstractList In a conversational context, a user converses with a system through a sequence of natural-language questions, i.e., utterances. Starting from a given subject, the conversation evolves through sequences of user utterances and system replies. The retrieval of documents relevant to an utterance is difficult due to informal use of natural language in speech and the complexity of understanding the semantic context coming from previous utterances. We adopt the 2019 TREC Conversational Assistant Track (CAsT) framework to experiment with a modular architecture performing in order: (i) automatic utterance understanding and rewriting, (ii) first-stage retrieval of candidate passages for the rewritten utterances, and (iii) neural re-ranking of candidate passages. By understanding the conversational context, we propose adaptive utterance rewriting strategies based on the current utterance and the dialogue evolution of the user with the system. A classifier identifies those utterances lacking context information as well as the dependencies on the previous utterances. Experimentally, we evaluate the proposed architecture in terms of traditional information retrieval metrics at small cutoffs. Results demonstrate the effectiveness of our techniques, achieving an improvement up to 0.6512 (+201%) for P@1 and 0.4484 (+214%) for nDCG@3 w.r.t. the CAsT baseline.
In a conversational context, a user converses with a system through a sequence of natural-language questions, i.e., utterances. Starting from a given subject, the conversation evolves through sequences of user utterances and system replies. The retrieval of documents relevant to an utterance is difficult due to informal use of natural language in speech and the complexity of understanding the semantic context coming from previous utterances. We adopt the 2019 TREC Conversational Assistant Track (CAsT) framework to experiment with a modular architecture performing in order: (i) automatic utterance understanding and rewriting, (ii) first-stage retrieval of candidate passages for the rewritten utterances, and (iii) neural re-ranking of candidate passages. By understanding the conversational context, we propose adaptive utterance rewriting strategies based on the current utterance and the dialogue evolution of the user with the system. A classifier identifies those utterances lacking context information as well as the dependencies on the previous utterances. Experimentally, we evaluate the proposed architecture in terms of traditional information retrieval metrics at small cutoffs. Results demonstrate the effectiveness of our techniques, achieving an improvement up to 0.6512 (+201%) for P@1 and 0.4484 (+214%) for nDCG@3 w.r.t. the CAsT baseline. •We present conversational utterance rewriting approaches based on classification•Utterance classification identifies utterances lacking context and their dependencies•Experiments show that our strategies outperform the state-of-the-art techniques
ArticleNumber 102682
Author Tonellotto, Nicola
Perego, Raffaele
Nardini, Franco Maria
Mele, Ida
Muntean, Cristina Ioana
Frieder, Ophir
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Keywords Conversational IR
Query rewriting
Neural re-ranking
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SSID ssj0004512
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Snippet In a conversational context, a user converses with a system through a sequence of natural-language questions, i.e., utterances. Starting from a given subject,...
SourceID proquest
crossref
elsevier
SourceType Aggregation Database
Enrichment Source
Index Database
Publisher
StartPage 102682
SubjectTerms Architecture
Context
Conversational IR
Information retrieval
Mathematical models
Natural language processing
Neural re-ranking
Query rewriting
Semantics
Sequences
Title Adaptive utterance rewriting for conversational search
URI https://dx.doi.org/10.1016/j.ipm.2021.102682
https://www.proquest.com/docview/2593193102
Volume 58
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