Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT

The cloud-edge computing model has been expected to play a revolutionary role in promoting the quality of future generation large-scale Internet of Things (IoT) services. However, security and privacy in data sharing remain crucial issues hindering the success of cloud-edge IoT services. While some...

Full description

Saved in:
Bibliographic Details
Main Authors: SUN, Jianfei, BAO, Yangyang, QIU, Weidong, LU, Rongxing, ZHANG, Songnian, GUAN, Yunguo, CHENG, Xiaochun
Format: text
Language:English
Published: Institutional Knowledge at Singapore Management University 2024
Subjects:
Online Access:https://ink.library.smu.edu.sg/sis_research/9291
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Singapore Management University
Language: English
id sg-smu-ink.sis_research-10291
record_format dspace
spelling sg-smu-ink.sis_research-102912024-09-13T13:12:03Z Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT SUN, Jianfei BAO, Yangyang QIU, Weidong LU, Rongxing ZHANG, Songnian GUAN, Yunguo CHENG, Xiaochun The cloud-edge computing model has been expected to play a revolutionary role in promoting the quality of future generation large-scale Internet of Things (IoT) services. However, security and privacy in data sharing remain crucial issues hindering the success of cloud-edge IoT services. While some solutions based on attribute-based encryption (ABE) have been proposed to address these issues, they still face practical challenges such as attribute privacy leakage, resource-constrained devices, dynamic user groups, inflexible and inefficient service response. To address these challenges, this paper proposes a privacy-preserving fine-grained data sharing scheme with dynamic service (PF2DS), which implements access control by calculating the inner product between an attribute vector and an access vector. PF2DS is also capable of providing dynamic user group services through an efficient and indirect user revocation mechanism that periodically updates the key-embedded leaf nodes. Building on PF2DS, edge-assisted PF2DS (EPF2DS) delegates most of the operations to the edge device, which facilitates the performance of resource-constrained IoT devices. EPF2DS also supports efficient and asynchronous keyword search over the ciphertexts stored in the cloud. We demonstrate the security by the rigorous security proof. Both theoretical comparisons and experimental simulations demonstrate the practicality and superiority of our schemes over existing works. 2024-08-01T07:00:00Z text https://ink.library.smu.edu.sg/sis_research/9291 info:doi/10.1109/TDSC.2024.3432650 Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Internet Of Things Data Privacy Security Privacy Cloud Computing Vectors Encryption Attribute Based Access Control Cloud Edge Computing Internet Of Things Keyword Search Databases and Information Systems
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Internet Of Things
Data Privacy
Security
Privacy
Cloud Computing
Vectors
Encryption
Attribute Based Access Control
Cloud Edge Computing
Internet Of Things
Keyword Search
Databases and Information Systems
spellingShingle Internet Of Things
Data Privacy
Security
Privacy
Cloud Computing
Vectors
Encryption
Attribute Based Access Control
Cloud Edge Computing
Internet Of Things
Keyword Search
Databases and Information Systems
SUN, Jianfei
BAO, Yangyang
QIU, Weidong
LU, Rongxing
ZHANG, Songnian
GUAN, Yunguo
CHENG, Xiaochun
Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT
description The cloud-edge computing model has been expected to play a revolutionary role in promoting the quality of future generation large-scale Internet of Things (IoT) services. However, security and privacy in data sharing remain crucial issues hindering the success of cloud-edge IoT services. While some solutions based on attribute-based encryption (ABE) have been proposed to address these issues, they still face practical challenges such as attribute privacy leakage, resource-constrained devices, dynamic user groups, inflexible and inefficient service response. To address these challenges, this paper proposes a privacy-preserving fine-grained data sharing scheme with dynamic service (PF2DS), which implements access control by calculating the inner product between an attribute vector and an access vector. PF2DS is also capable of providing dynamic user group services through an efficient and indirect user revocation mechanism that periodically updates the key-embedded leaf nodes. Building on PF2DS, edge-assisted PF2DS (EPF2DS) delegates most of the operations to the edge device, which facilitates the performance of resource-constrained IoT devices. EPF2DS also supports efficient and asynchronous keyword search over the ciphertexts stored in the cloud. We demonstrate the security by the rigorous security proof. Both theoretical comparisons and experimental simulations demonstrate the practicality and superiority of our schemes over existing works.
format text
author SUN, Jianfei
BAO, Yangyang
QIU, Weidong
LU, Rongxing
ZHANG, Songnian
GUAN, Yunguo
CHENG, Xiaochun
author_facet SUN, Jianfei
BAO, Yangyang
QIU, Weidong
LU, Rongxing
ZHANG, Songnian
GUAN, Yunguo
CHENG, Xiaochun
author_sort SUN, Jianfei
title Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT
title_short Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT
title_full Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT
title_fullStr Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT
title_full_unstemmed Privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge IoT
title_sort privacy-preserving fine-grained data sharing with dynamic service for the cloud-edge iot
publisher Institutional Knowledge at Singapore Management University
publishDate 2024
url https://ink.library.smu.edu.sg/sis_research/9291
_version_ 1814047874550333440