Qi Chen 0024

dblp:66/6320-24 · DBLP profile ↗
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7ranked-venue papers in the field
1as first author
6since 2021 · last 2023
0000-0001-7386-8706ORCID · conflict

Domains — venue-derived; a paper can count in several

Knowledge Engineering, Semantic Web & Information Systems · 5Other / Interdisciplinary · 2 (1 first)
YearPublicationVenuePosition
2023 A novel extended multimodal AI framework towards vulnerability detection in smart contracts
Wanqing Jie, Qi Chen 0024, Arthur Sandor Voundi Koe, Jin Li 0002
Inf. Sci.2
2023 Hieraledger: Towards malicious gateways in appendable-block blockchain constructions for IoT
Arthur Sandor Voundi Koe, Shan Ai, Qi Chen 0024, Kongyang Chen, Shiwen Zhang 0004, Xiehua Li
Inf. Sci.3
2023 Explanation leaks: Explanation-guided model extraction attacks
Anli Yan, Teng Huang 0001, Lishan Ke, Xiaozhang Liu, Qi Chen 0024, Changyu Dong
Inf. Sci.5
2022 Outsourcing multiauthority access control revocation and computations over medical data to mobile cloud
abstract
With recent advances in cloud computing, mobile devices are increasingly being used to record patient physiological parameters, and transfer them to a cloud-based hospital information system, for access control mediation over a variety of stakeholders. In such a cloud-based architecture, the patient must specify an access policy for a group of authorized parties towards its outsourced data. Multiauthority ciphertext-policy attribute-based encryption (CP-ABE) was provided as an innovative cloud-based access control cryptographic primitive to tackle the key escrow issue in a centralized architecture, and boost flexibility through cross-domain attributes management. Existing works, however, still have glaring drawbacks. First, they still rely on a trusted authority to generate and distribute user secret keys. Second, they do not simultaneously provide encryption, decryption, or revocation outsourcing, resulting in high processing and communication cost for both the data sender and the data receiver. Third, they do not support both user and attribute revocation, and the integrity of ciphertext downloaded from the cloud is not always verified at the user end. As a result, this paper exploits the dummy attribute technique and introduces a novel, efficient, and secure multiauthority ciphertext-policy ABE method for mediating access control over medical data, in the mobile cloud. The ciphertext access policy enforcement, partial ciphertext decryption, and both the user and attribute indirect revocation updates are safely outsourced to the cloud server in this study. Theoretical analysis demonstrates that our scheme is efficient and verifiable, and we prove that our construction is secure under the decisional bilinear Diffie-Hellman assumption.
Arthur Sandor Voundi Koe, Qi Chen 0024, Shan Ai, Hongyang Yan, Shiwen Zhang 0004, Duncan S. Wong
Int. J. Intell. Syst.2
2022 Similarity-based integrity protection for deep learning systems
Ruitao Hou, Shan Ai, Qi Chen 0024, Hongyang Yan, Teng Huang 0001, Kongyang Chen
Inf. Sci.3
2022 Sender anonymity: Applying ring signature in gateway-based blockchain for IoT is not enough
Arthur Sandor Voundi Koe, Shan Ai, Anli Yan, Qi Chen 0024, Kanghua Mo, Wanqing Jie, Shiwen Zhang 0004
Inf. Sci.6
2013 Efficient integer span program for hierarchical threshold access structure
Qi Chen 0024, Dingyi Pei, Chunming Tang 0003, Gansen Zhao
Inf. Process. Lett.1