Privacy-preserving voluntary-tallying leader election for Internet of Things

The Internet of Things (IoT) is commonly deployed with devices of limited power and computation capability. A centralized IoT architecture provides a simplified management for IoT system but brings redundancy by the unnecessary data traffic with a data center. A decentralized IoT reduces the cost on...

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Main Authors: WU, Tong, YANG, Guomin, ZHU, Liehuang, WU, Yulin
Format: text
Language:English
Published: Institutional Knowledge at Singapore Management University 2021
Subjects:
IoT
Online Access:https://ink.library.smu.edu.sg/sis_research/7330
https://ink.library.smu.edu.sg/context/sis_research/article/8333/viewcontent/Privacy_preserving_voluntary_tallying_leader_election_for_Internet_of_Things.pdf
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Institution: Singapore Management University
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spelling sg-smu-ink.sis_research-83332022-11-02T08:29:06Z Privacy-preserving voluntary-tallying leader election for Internet of Things WU, Tong YANG, Guomin ZHU, Liehuang WU, Yulin The Internet of Things (IoT) is commonly deployed with devices of limited power and computation capability. A centralized IoT architecture provides a simplified management for IoT system but brings redundancy by the unnecessary data traffic with a data center. A decentralized IoT reduces the cost on data traffic and is resilient to the single-point-of failure. The blockchain technique has attracted a large amount of research, which is redeemed as a perspective of decentralized IoT system infrastructure. It also brings new privacy challenges for that the blockchain is a public ledger of all digital events executed and shared among all participants. The decentralized IoT system relies on the leader election deeply to implement the decentralized communications among the distributed nodes. The conventional leader election must have a centralized authority, contrasting to the decentralization. As an alternative, self-tallying type schemes have been proposed in the literature for decentralized systems. These schemes suffer from adaptive and abortive issues. Also, some additional factors should be considered, such as the availability of candidate nodes. If the candidate node is unavailable after the voting phase due to being offline or ongoing tasks, the next available candidate should be elected. To accommodate such a need, in this paper, we propose a new leader election paradigm called voluntary-tallying leader election, which achieves the core requirements such as ballet secrecy, voter privacy and the additional feature of voluntary-tallying. We formalize the system and security models for this new election paradigm and present a secure and practical construction. 2021-10-01T07:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/7330 info:doi/10.1016/j.ins.2021.06.028 https://ink.library.smu.edu.sg/context/sis_research/article/8333/viewcontent/Privacy_preserving_voluntary_tallying_leader_election_for_Internet_of_Things.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University IoT Blockchain Voluntary-tallying Voter anonymity Ballot privacy Databases and Information Systems Information Security
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic IoT
Blockchain
Voluntary-tallying
Voter anonymity
Ballot privacy
Databases and Information Systems
Information Security
spellingShingle IoT
Blockchain
Voluntary-tallying
Voter anonymity
Ballot privacy
Databases and Information Systems
Information Security
WU, Tong
YANG, Guomin
ZHU, Liehuang
WU, Yulin
Privacy-preserving voluntary-tallying leader election for Internet of Things
description The Internet of Things (IoT) is commonly deployed with devices of limited power and computation capability. A centralized IoT architecture provides a simplified management for IoT system but brings redundancy by the unnecessary data traffic with a data center. A decentralized IoT reduces the cost on data traffic and is resilient to the single-point-of failure. The blockchain technique has attracted a large amount of research, which is redeemed as a perspective of decentralized IoT system infrastructure. It also brings new privacy challenges for that the blockchain is a public ledger of all digital events executed and shared among all participants. The decentralized IoT system relies on the leader election deeply to implement the decentralized communications among the distributed nodes. The conventional leader election must have a centralized authority, contrasting to the decentralization. As an alternative, self-tallying type schemes have been proposed in the literature for decentralized systems. These schemes suffer from adaptive and abortive issues. Also, some additional factors should be considered, such as the availability of candidate nodes. If the candidate node is unavailable after the voting phase due to being offline or ongoing tasks, the next available candidate should be elected. To accommodate such a need, in this paper, we propose a new leader election paradigm called voluntary-tallying leader election, which achieves the core requirements such as ballet secrecy, voter privacy and the additional feature of voluntary-tallying. We formalize the system and security models for this new election paradigm and present a secure and practical construction.
format text
author WU, Tong
YANG, Guomin
ZHU, Liehuang
WU, Yulin
author_facet WU, Tong
YANG, Guomin
ZHU, Liehuang
WU, Yulin
author_sort WU, Tong
title Privacy-preserving voluntary-tallying leader election for Internet of Things
title_short Privacy-preserving voluntary-tallying leader election for Internet of Things
title_full Privacy-preserving voluntary-tallying leader election for Internet of Things
title_fullStr Privacy-preserving voluntary-tallying leader election for Internet of Things
title_full_unstemmed Privacy-preserving voluntary-tallying leader election for Internet of Things
title_sort privacy-preserving voluntary-tallying leader election for internet of things
publisher Institutional Knowledge at Singapore Management University
publishDate 2021
url https://ink.library.smu.edu.sg/sis_research/7330
https://ink.library.smu.edu.sg/context/sis_research/article/8333/viewcontent/Privacy_preserving_voluntary_tallying_leader_election_for_Internet_of_Things.pdf
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