Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage

Outsourcing storage has emerged as an effective solution to manage the increasing volume of data. With the popularity of pay-as-you-go payment models in outsourcing storage, data auditing schemes that prioritize timeliness can be valuable evidence for elastic bill settlement. Unfortunately, existing...

Full description

Saved in:
Bibliographic Details
Main Authors: ZHANG, Chuan, XUAN, Haojun, WU, Tong, LIU, Ximeng, YANG, Guomin, ZHU, Liehuang
Format: text
Language:English
Published: Institutional Knowledge at Singapore Management University 2024
Subjects:
Online Access:https://ink.library.smu.edu.sg/sis_research/8636
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Singapore Management University
Language: English
id sg-smu-ink.sis_research-9639
record_format dspace
spelling sg-smu-ink.sis_research-96392024-01-25T06:30:03Z Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage ZHANG, Chuan XUAN, Haojun WU, Tong LIU, Ximeng YANG, Guomin ZHU, Liehuang Outsourcing storage has emerged as an effective solution to manage the increasing volume of data. With the popularity of pay-as-you-go payment models in outsourcing storage, data auditing schemes that prioritize timeliness can be valuable evidence for elastic bill settlement. Unfortunately, existing data auditing schemes do not sufficiently consider timeliness during auditing. Furthermore, practical data auditing schemes should have the capability to check the integrity of scalable data. In this paper, we propose a blockchain-based dynamic data auditing scheme with strong timeliness to ensure that data stored in outsourcing storage systems remain intact. Our scheme encapsulates timestamps into homomorphic verifiable tags to simultaneously check data integrity and timestamp validity. To achieve dynamicity, we utilize the Merkle hash tree to store the tags, allowing for block-level dynamic operations. Additionally, by leveraging the transparency, non-repudiation, and tamper resistance of blockchain technology, we design a blockchain-based data auditing framework to prevent malicious behavior from all entities. We then formally prove the soundness and privacy of our scheme. Finally, we conduct theoretical analysis and experimental evaluation to demonstrate that the performance of our scheme is of acceptable efficiency to existing works in terms of computation cost, communication overhead, and storage overhead. 2024-01-01T08:00:00Z text https://ink.library.smu.edu.sg/sis_research/8636 info:doi/10.1109/TIFS.2023.3338485 Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University blockchain dynamic data auditing Outsourcing storage timeliness Information Security
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic blockchain
dynamic data auditing
Outsourcing storage
timeliness
Information Security
spellingShingle blockchain
dynamic data auditing
Outsourcing storage
timeliness
Information Security
ZHANG, Chuan
XUAN, Haojun
WU, Tong
LIU, Ximeng
YANG, Guomin
ZHU, Liehuang
Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
description Outsourcing storage has emerged as an effective solution to manage the increasing volume of data. With the popularity of pay-as-you-go payment models in outsourcing storage, data auditing schemes that prioritize timeliness can be valuable evidence for elastic bill settlement. Unfortunately, existing data auditing schemes do not sufficiently consider timeliness during auditing. Furthermore, practical data auditing schemes should have the capability to check the integrity of scalable data. In this paper, we propose a blockchain-based dynamic data auditing scheme with strong timeliness to ensure that data stored in outsourcing storage systems remain intact. Our scheme encapsulates timestamps into homomorphic verifiable tags to simultaneously check data integrity and timestamp validity. To achieve dynamicity, we utilize the Merkle hash tree to store the tags, allowing for block-level dynamic operations. Additionally, by leveraging the transparency, non-repudiation, and tamper resistance of blockchain technology, we design a blockchain-based data auditing framework to prevent malicious behavior from all entities. We then formally prove the soundness and privacy of our scheme. Finally, we conduct theoretical analysis and experimental evaluation to demonstrate that the performance of our scheme is of acceptable efficiency to existing works in terms of computation cost, communication overhead, and storage overhead.
format text
author ZHANG, Chuan
XUAN, Haojun
WU, Tong
LIU, Ximeng
YANG, Guomin
ZHU, Liehuang
author_facet ZHANG, Chuan
XUAN, Haojun
WU, Tong
LIU, Ximeng
YANG, Guomin
ZHU, Liehuang
author_sort ZHANG, Chuan
title Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
title_short Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
title_full Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
title_fullStr Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
title_full_unstemmed Blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
title_sort blockchain-based dynamic time-encapsulated data auditing for outsourcing storage
publisher Institutional Knowledge at Singapore Management University
publishDate 2024
url https://ink.library.smu.edu.sg/sis_research/8636
_version_ 1789483296929873920