Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data

In cloud service over crowd-sensing data, the data owner (DO) publishes the sensing data through the cloud server, so that the user can obtain the information of interest on demand. But the cloud service providers (CSP) are often untrustworthy. The privacy and security concerns emerge over the authe...

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Main Authors: Liangmin Wang, Qingqing Xie, Hong Zhong
Format: Article
Language:English
Published: IEEE 2017-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/7866828/
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spelling doaj-4c1cfe9d4dcb47fdbeb67515aad2b90f2021-03-29T20:01:54ZengIEEEIEEE Access2169-35362017-01-0153216322710.1109/ACCESS.2017.26760087866828Cooperative Query Answer Authentication Scheme Over Anonymous Sensing DataLiangmin Wang0Qingqing Xie1https://orcid.org/0000-0002-9625-2653Hong Zhong2https://orcid.org/0000-0002-0392-9734Center of Information Support and Assurance Technology, Anhui University, Hefei, ChinaDepartment of Computer Science and technology, Anhui University, Hefei, ChinaDepartment of Computer Science and technology, Anhui University, Hefei, ChinaIn cloud service over crowd-sensing data, the data owner (DO) publishes the sensing data through the cloud server, so that the user can obtain the information of interest on demand. But the cloud service providers (CSP) are often untrustworthy. The privacy and security concerns emerge over the authenticity of the query answer and the leakage of the DO identity. To solve these issues, many researchers study the query answer authentication scheme for cloud service system. The traditional technique is providing DO's signature for the published data. But the signature would always reveal DO's identity. To deal with this disadvantage, this paper proposes a cooperative query answer authentication scheme, based on the ring signature, the Merkle hash tree (MHT) and the non-repudiable service protocol. Through the cooperation among the entities in cloud service system, the proposed scheme could not only verify the query answer, but also protect the DO's identity. First, it picks up the internal nodes of MHT to sign, as well as the root node. Thus, the verification computation complexity could be significantly reduced from O(log<sub>2</sub>N) to O(log<sub>2</sub>N<sup>0.5</sup>) in the best case. Then, it improves an existing ring signature to sign the selected nodes. Furthermore, the proposed scheme employs the non-repudiation protocol during the transmission of query answer and verification object to protect trading behavior between the CSP and users. The security and performance analysis prove the security and feasibility of the proposed scheme. Extensive experimental results demonstrate its superiority of verification efficiency and communication overhead.https://ieeexplore.ieee.org/document/7866828/Cooperationquery answer authenticationidentity privacynon-repudiation protocolcrowd-sensing data
collection DOAJ
language English
format Article
sources DOAJ
author Liangmin Wang
Qingqing Xie
Hong Zhong
spellingShingle Liangmin Wang
Qingqing Xie
Hong Zhong
Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data
IEEE Access
Cooperation
query answer authentication
identity privacy
non-repudiation protocol
crowd-sensing data
author_facet Liangmin Wang
Qingqing Xie
Hong Zhong
author_sort Liangmin Wang
title Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data
title_short Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data
title_full Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data
title_fullStr Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data
title_full_unstemmed Cooperative Query Answer Authentication Scheme Over Anonymous Sensing Data
title_sort cooperative query answer authentication scheme over anonymous sensing data
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2017-01-01
description In cloud service over crowd-sensing data, the data owner (DO) publishes the sensing data through the cloud server, so that the user can obtain the information of interest on demand. But the cloud service providers (CSP) are often untrustworthy. The privacy and security concerns emerge over the authenticity of the query answer and the leakage of the DO identity. To solve these issues, many researchers study the query answer authentication scheme for cloud service system. The traditional technique is providing DO's signature for the published data. But the signature would always reveal DO's identity. To deal with this disadvantage, this paper proposes a cooperative query answer authentication scheme, based on the ring signature, the Merkle hash tree (MHT) and the non-repudiable service protocol. Through the cooperation among the entities in cloud service system, the proposed scheme could not only verify the query answer, but also protect the DO's identity. First, it picks up the internal nodes of MHT to sign, as well as the root node. Thus, the verification computation complexity could be significantly reduced from O(log<sub>2</sub>N) to O(log<sub>2</sub>N<sup>0.5</sup>) in the best case. Then, it improves an existing ring signature to sign the selected nodes. Furthermore, the proposed scheme employs the non-repudiation protocol during the transmission of query answer and verification object to protect trading behavior between the CSP and users. The security and performance analysis prove the security and feasibility of the proposed scheme. Extensive experimental results demonstrate its superiority of verification efficiency and communication overhead.
topic Cooperation
query answer authentication
identity privacy
non-repudiation protocol
crowd-sensing data
url https://ieeexplore.ieee.org/document/7866828/
work_keys_str_mv AT liangminwang cooperativequeryanswerauthenticationschemeoveranonymoussensingdata
AT qingqingxie cooperativequeryanswerauthenticationschemeoveranonymoussensingdata
AT hongzhong cooperativequeryanswerauthenticationschemeoveranonymoussensingdata
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