Heterogeneous deniable authenticated encryption for location-based services.

The location-based services can provide users with the requested location information. But users also need to disclose their current location to the location-based service provider. Therefore, how to protect user's location privacy is a major concern. In this paper, we propose a heterogeneous d...

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Main Authors: Chunhua Jin, Ge Kan, Guanhua Chen, Changhui Yu, Ying Jin, Chengjie Xu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0244978
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spelling doaj-61bffbf51eef456aab5a836e0d1cafe12021-05-18T04:30:28ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-01161e024497810.1371/journal.pone.0244978Heterogeneous deniable authenticated encryption for location-based services.Chunhua JinGe KanGuanhua ChenChanghui YuYing JinChengjie XuThe location-based services can provide users with the requested location information. But users also need to disclose their current location to the location-based service provider. Therefore, how to protect user's location privacy is a major concern. In this paper, we propose a heterogeneous deniable authenticated encryption scheme called HDAE for location-based services. The proposed scheme permits a sender in a public key infrastructure environment to transmit a message to a receiver in an identity-based environment. Our design utilizes a hybrid encryption method combing the tag-key encapsulation mechanism (tag-KEM) and the data encapsulation mechanism (DEM), which is well adopted for location-based services applications. We give how to design an HDAE scheme utilizing a heterogeneous deniable authenticated tag-KEM (HDATK) and a DEM. We also construct an HDATK scheme and provide security proof in the random oracle model. Comprehensive analysis shows that our scheme is efficient and secure. In addition, we give an application of the HDAE to a location-based services system.https://doi.org/10.1371/journal.pone.0244978
collection DOAJ
language English
format Article
sources DOAJ
author Chunhua Jin
Ge Kan
Guanhua Chen
Changhui Yu
Ying Jin
Chengjie Xu
spellingShingle Chunhua Jin
Ge Kan
Guanhua Chen
Changhui Yu
Ying Jin
Chengjie Xu
Heterogeneous deniable authenticated encryption for location-based services.
PLoS ONE
author_facet Chunhua Jin
Ge Kan
Guanhua Chen
Changhui Yu
Ying Jin
Chengjie Xu
author_sort Chunhua Jin
title Heterogeneous deniable authenticated encryption for location-based services.
title_short Heterogeneous deniable authenticated encryption for location-based services.
title_full Heterogeneous deniable authenticated encryption for location-based services.
title_fullStr Heterogeneous deniable authenticated encryption for location-based services.
title_full_unstemmed Heterogeneous deniable authenticated encryption for location-based services.
title_sort heterogeneous deniable authenticated encryption for location-based services.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2021-01-01
description The location-based services can provide users with the requested location information. But users also need to disclose their current location to the location-based service provider. Therefore, how to protect user's location privacy is a major concern. In this paper, we propose a heterogeneous deniable authenticated encryption scheme called HDAE for location-based services. The proposed scheme permits a sender in a public key infrastructure environment to transmit a message to a receiver in an identity-based environment. Our design utilizes a hybrid encryption method combing the tag-key encapsulation mechanism (tag-KEM) and the data encapsulation mechanism (DEM), which is well adopted for location-based services applications. We give how to design an HDAE scheme utilizing a heterogeneous deniable authenticated tag-KEM (HDATK) and a DEM. We also construct an HDATK scheme and provide security proof in the random oracle model. Comprehensive analysis shows that our scheme is efficient and secure. In addition, we give an application of the HDAE to a location-based services system.
url https://doi.org/10.1371/journal.pone.0244978
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