EDBT 2026 Demo / reviewers in the wild / expert
Minming Huang
dblp:54/3441
· DBLP profile ↗
7ranked-venue papers
0as first author
7since 2021 · last 2026
0009-0009-2027-3384ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 6 · 6 since 2021Systems, architecture and hardware · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | PriSrv+: Privacy and Usability-Enhanced Wireless Service Discovery with Fast and Expressive Matchmaking Encryption
Yang Yang 0026, Guomin Yang, Yingjiu Li, Pengfei Wu 0003, Minming Huang, Jian Weng 0001, HweeHwa Pang, Robert H. Deng |
NDSS | 6 |
| 2025 | AKMA+: Security and Privacy-Enhanced and Standard-Compatible AKMA for 5G Communication
Yang Yang 0026, Guomin Yang, Yingjiu Li, Minming Huang, Zilin Shen, Imtiaz Karim, Ralf Sasse, David A. Basin, Elisa Bertino, Jian Weng 0001, HweeHwa Pang, Robert H. Deng |
USENIX Security Symposium | 4 |
| 2025 | DkvSSO: Delegatable Keyed-Verification Credentials for Efficient Anonymous Single Sign-OnabstractAnonymous single sign-on (ASSO) is an anonymous multi-service authentication method for end users. However, existing ASSO schemes suffer from heavy ticket requesting and verifying overheads, limiting their applications in large-scale settings. To address this problem, we propose a novel concept called keyed-verification anonymous credentials with disposable delegation (KVAC-DD) in the multi-verifier setting. Next, we extend KVAC-DD to build an efficient ASSO system, dubbed DkvSSO. The construction of DkvSSO can be instantiated in efficient prime-order groups, avoiding costly operations required in previous ASSO systems. We formally prove the security of our proposed constructions. Extensive experiments show that DkvSSO is significantly more efficient than existing ASSO schemes, making it suitable to be deployed in large-scale settings. Wenyi Xue, Yang Yang 0026, Minming Huang, Yingjiu Li, HweeHwa Pang, Robert H. Deng |
IEEE Trans. Inf. Forensics Secur. | 3 |
| 2025 | DISC: Decentralized Identity System With Self-Sovereign Credential AggregationabstractThe evolution of decentralized identity (DID) and self-sovereign identity (SSI) frameworks, as endorsed by W3C Verifiable Credentials (VC) and eIDAS 2.0, underscores the need for secure, efficient, and privacy-preserving credential management. However, existing credential systems often depend on centralized issuers, lack efficient aggregation mechanisms, or fail to ensure unlinkability across authentication sessions. To address these challenges, we propose DISC (Decentralized Identity System with Self-Sovereign Credential Aggregation), a novel credential system that enables multi-authority credential issuance, user-controlled credential aggregation, and unlinkable authentication. DISC allows users to aggregate credentials from multiple issuers while maintaining constant-size authentication tokens and supporting batch verification for scalable authentication. Additionally, DISC ensures unlinkability of aggregated authentication tokens, preventing verifiers from correlating sessions even when credentials share attributes. Security analysis proves DISC’s unforgeability, anonymity, and unlinkability, while experimental results confirm its efficiency in credential issuance, aggregation, and verification. Compared to existing schemes, DISC offers a scalable, privacy-preserving, and efficient decentralized identity solution, making it well-suited for real-world applications requiring secure and privacy-preserving identity verification. Yang Yang 0026, Wai Keung Ching, Minming Huang, Supachate Innet, Guomin Yang, HweeHwa Pang, Robert H. Deng |
IEEE Trans. Inf. Forensics Secur. | 3 |
| 2024 | PriSrv: Privacy-Enhanced and Highly Usable Service Discovery in Wireless Communications
Yang Yang 0026, Robert H. Deng, Guomin Yang, Yingjiu Li, HweeHwa Pang, Minming Huang, Jian Weng 0001 |
NDSS | 6 |
| 2024 | AnoPay: Anonymous Payment for Vehicle Parking With Updatable CredentialabstractMany existing anonymous parking payment schemes lack high efficiency and flexibility. For instance, the calculation and communication costs involved in payment may linearly increase with the payment amount. In this paper, we propose an anonymous payment system (dubbed AnoPay) for vehicle parking, which leverages updatable attribute-based anonymous credentials and efficient zero-knowledge proof (ZKP) to achieve user anonymity and constant overhead for parking fee payment. To further improve the efficiency, we design a secure parking fee aggregation protocol based on linear homomorphic encryption to aggregate parking transactions, where the amount of each parking transaction is hidden and the privacy of the parking lot in terms of its revenue is guaranteed. AnoPay achieves both unlinkability and accountability, malicious payments can be efficiently traced when it is necessary. We provide a security model and rigorous proof for each security property of AnoPay. Extensive experiments and comparisons demonstrate the efficiency and practicality of the system. Yang Yang 0026, Wenyi Xue, Yonghua Zhan, Minming Huang, Yingjiu Li, Robert H. Deng |
IEEE Trans. Dependable Secur. Comput. | 4 |
| 2023 | A privilege-constrained sanitizable signature scheme for e-health systems
Yonghua Zhan, Bixia Yi, Yang Yang 0026, Chen Dong 0002, Minming Huang |
J. Syst. Archit. | 6 |