FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things
Cloud-assisted Industrial Internet of Things (IIoT) relies on cloud computing to provide massive data storage services. To ensure the confidentiality, sensitive industrial data need to be encrypted before being outsourced to cloud storage server. Public-key encryption with keyword search (PEKS) enab...
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sg-ntu-dr.10356-1519702023-02-28T19:46:44Z FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things Zhang, Xiaojun Xu, Chunxiang Wang, Huaxiong Zhang, Yuan Wang, Shixiong School of Physical and Mathematical Sciences Research Techno Plaza Science::Mathematics Cloud-assisted Industrial Internet of Things Public-key Encryption with Keyword Search Cloud-assisted Industrial Internet of Things (IIoT) relies on cloud computing to provide massive data storage services. To ensure the confidentiality, sensitive industrial data need to be encrypted before being outsourced to cloud storage server. Public-key encryption with keyword search (PEKS) enables users to search target encrypted data by keywords. However, most existing PEKS schemes are based on conventional hardness assumptions, which are vulnerable to adversaries equipped with quantum computers in the near future. Moreover, they suffer from key exposure, and thus the security would be broken once the keys are compromised. In this paper, we propose a forward secure PEKS scheme (FS-PEKS) based on lattice assumptions for cloud-assisted IIoT, which is post-quantum secure. We integrate a lattice-based delegation mechanism into FS-PEKS to achieve forward security, such that the security of the system is still guaranteed even the keys are compromised by the adversaries. We define the first formal security model on forward security of PEKS, and prove the security of FS-PEKS under the model. As the keywords of industrial data are with inherently low entropy, we further extend FS-PEKS to resist insider keyword guessing attacks (IKGA). The comprehensive performance evaluation demonstrates that FS-PEKS is practical for cloud-assisted IIoT. Accepted version 2021-07-08T06:18:32Z 2021-07-08T06:18:32Z 2021 Journal Article Zhang, X., Xu, C., Wang, H., Zhang, Y. & Wang, S. (2021). FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things. IEEE Transactions On Dependable and Secure Computing, 1019(1032), 18-3. https://dx.doi.org/10.1109/TDSC.2019.2914117 1545-5971 https://hdl.handle.net/10356/151970 10.1109/TDSC.2019.2914117 1032 1019 18 3 en IEEE Transactions on Dependable and Secure Computing © 2021 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works. The published version is available at: https://doi.org/10.1109/TDSC.2019.2914117 application/pdf |
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Science::Mathematics Cloud-assisted Industrial Internet of Things Public-key Encryption with Keyword Search Zhang, Xiaojun Xu, Chunxiang Wang, Huaxiong Zhang, Yuan Wang, Shixiong FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things |
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Cloud-assisted Industrial Internet of Things (IIoT) relies on cloud computing to provide massive data storage services. To ensure the confidentiality, sensitive industrial data need to be encrypted before being outsourced to cloud storage server. Public-key encryption with keyword search (PEKS) enables users to search target encrypted data by keywords. However, most existing PEKS schemes are based on conventional hardness assumptions, which are vulnerable to adversaries equipped with quantum computers in the near future. Moreover, they suffer from key exposure, and thus the security would be broken once the keys are compromised. In this paper, we propose a forward secure PEKS scheme (FS-PEKS) based on lattice assumptions for cloud-assisted IIoT, which is post-quantum secure. We integrate a lattice-based delegation mechanism into FS-PEKS to achieve forward security, such that the security of the system is still guaranteed even the keys are compromised by the adversaries. We define the first formal security model on forward security of PEKS, and prove the security of FS-PEKS under the model. As the keywords of industrial data are with inherently low entropy, we further extend FS-PEKS to resist insider keyword guessing attacks (IKGA). The comprehensive performance evaluation demonstrates that FS-PEKS is practical for cloud-assisted IIoT. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Zhang, Xiaojun Xu, Chunxiang Wang, Huaxiong Zhang, Yuan Wang, Shixiong |
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Article |
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Zhang, Xiaojun Xu, Chunxiang Wang, Huaxiong Zhang, Yuan Wang, Shixiong |
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Zhang, Xiaojun |
title |
FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things |
title_short |
FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things |
title_full |
FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things |
title_fullStr |
FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things |
title_full_unstemmed |
FS-PEKS : lattice-based forward secure public-key encryption with keyword search for cloud-assisted Industrial Internet of Things |
title_sort |
fs-peks : lattice-based forward secure public-key encryption with keyword search for cloud-assisted industrial internet of things |
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2021 |
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https://hdl.handle.net/10356/151970 |
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1759854096591880192 |