Zhengjun Cao

dblp:92/1455 · DBLP profile ↗
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19ranked-venue papers
17as first author
8since 2021 · last 2025
0000-0003-2014-6093ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 9 · 8 first-author · 2 since 2021Systems, architecture and hardware · 5 · 5 first-author · 3 since 2021Computer networks · 2 · 2 first-author · 2 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 2 first-author · 1 since 2021Theory of computation · 1
YearPublicationVenuePosition
2025 Corrigendum to "SE-LAKAF: Security Enhanced Lightweight Authentication and Key Agreement Framework for Smart Grid Network"
Zhengjun Cao
Peer Peer Netw. Appl.1
2025 Comment on "Efficient design of an authenticated key agreement protocol for dew-assisted IoT systems"
Zhengjun Cao, Huachen Ye
J. Supercomput.1
2025 A Note on "AESM2 Attribute-Based Encrypted Search for Multi-Owner and Multi-User Distributed Systems"
abstract
We show that the attribute-based encrypted search protocol [IEEE TPDS, 2023, 34(1), 92–107] is insecure against unauthorized user querying attack, because an adversary can convert a valid query from any authorized user into a new legitimate query, while the server cannot detect the fraud.
Zhengjun Cao
IEEE Trans. Parallel Distributed Syst.1
2025 A note on "an efficient and provably secure authenticated key agreement scheme for mobile edge computing"
Zhengjun Cao
Wirel. Networks1
2024 Corrections to "Efficient Provably-Secure Dynamic ID-Based Authenticated Key Agreement Scheme With Enhanced Security Provision"
abstract
We show that the key agreement scheme [IEEE TDSC, 2022, 19(2): 1227–1238] is vulnerable to offline password guessing attack, not as claimed. We also reiterate the signification of an identifier which has often been neglected by some researchers.
Zhengjun Cao
IEEE Trans. Dependable Secur. Comput.1
2021 One privacy-preserving multi-keyword ranked search scheme revisited
Zhengjun Cao, Xiqi Wang, Lihua Liu 0001
Int. J. Inf. Comput. Secur.1
2021 Comment on "Efficient Secure Outsourcing of Large-Scale Sparse Linear Systems of Equations"
abstract
The scheme [IEEE Trans. Big Data, 4 (1), 2018, 26-39] is flawed because the sparsity of coefficient matrix is neglected. In the discussed scenario, we find it is unnecessary to outsource such a problem because the client can solve it locally. Even if the matrix is not sparse, the proposed paradigm which requires a great number of interactions, is rarely adopted because of the possibly incurred massive communication cost.
Zhengjun Cao, Olivier Markowitch
IEEE Trans. Big Data1
2021 Comment on "Circuit Ciphertext-Policy Attribute-Based Hybrid Encryption With Verifiable Delegation in Cloud Computing"
abstract
The scheme [1] is flawed because: (1) its circuit access structure is confusingly described; (2) the cloud server cannot complete the related computations; (3) some users can conspire to generate new decryption keys, without the help of the key generation authority.
Zhengjun Cao, Olivier Markowitch
IEEE Trans. Parallel Distributed Syst.1
2019 Comment on "Highly Efficient Linear Regression Outsourcing to a Cloud"
abstract
We show that Chen et al.'s schemes [IEEE TCC, 2(4), 2014, 499-508] for outsourcing linear regression computation to the cloud are not unquestioned. In scheme 1, the client has to generate an orthogonal matrix. Its computational complexity is almost equal to that of solving a linear regression problem locally. In such case, the client has no necessary to outsource the computations to the cloud. In scheme 2, it masks a matrix by multiplying two diagonal matrixes. The linear transformation is very vulnerable to statistical attack.
Zhengjun Cao, Lihua Liu 0001, Olivier Markowitch
IEEE Trans. Cloud Comput.1
2016 Comment on "Harnessing the Cloud for Securely Outsourcing Large-Scale Systems of Linear Equations"
abstract
We remark that the Wang et al.'s scheme [IEEE Transanction Parallel Distributed Systems, 24 (6), 1172-1181, 2013] fails because the involved homomorphic encryption system is invalid in the context of the scheme. This is due to that the general arithmetic over the field$\mathbb {R}$(the outsourced linear equations are constrained to the field) is not compatible with the modular arithmetic over any finite domain (the homomorphic encryption is constrained to the domain).
Zhengjun Cao, Lihua Liu 0001
IEEE Trans. Parallel Distributed Syst.1
2013 A Note on a Signature Building Block and Relevant Security Reduction in the Green-Hohenberger OT Scheme
Zhengjun Cao, Frédéric Lafitte, Olivier Markowitch
Inscrypt1
2011 Adleman-Manders-Miller Root Extraction Method Revisited
Zhengjun Cao, Qian Sha
Inscrypt1
2011 Extension of Barreto-Voloch Root Extraction Method
Zhengjun Cao
ICICS1
2008 A Group Key Agreement Scheme Revisited
abstract
In PKC'2004, a constant-round group key exchange protocol is proposed. It takes advantage of the properties of the ElGamal encryption scheme combined with the standard secret sharing technique. In this paper, we show that the scheme can be greatly simplified because the standard secret sharing technique does not work well. Based on the observation, we present a revisited scheme. It saves about 4/5 cost of the original scheme. In addition, its security can be directly reduced to the underlying Schnorr's signature scheme and the ElGamal encryption.
Zhengjun Cao, Lihua Liu 0001
IAS1
2008 Classification of signature-only signature models
Zhengjun Cao, Mulan Liu
Sci. China Ser. F Inf. Sci.1
2007 Boudot's Range-Bounded Commitment Scheme Revisited
Zhengjun Cao, Lihua Liu 0001
ICICS1
2006 Analysis of One Popular Group Signature Scheme
Zhengjun Cao
ASIACRYPT1
2006 Cryptanalysis of Two Signature Schemes Based on Bilinear Pairings in CISC '05
Haeryong Park, Zhengjun Cao, Lihua Liu 0001, Seongan Lim, Ikkwon Yie, Kilsoo Chun
Inscrypt2
2006 On computing ordN(2) and its application
Lihua Liu 0001, Zhengjun Cao
Inf. Comput.2