Jingnan He

dblp:167/0617 · DBLP profile ↗
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10ranked-venue papers
1as first author
4since 2021 · last 2026
—ORCID · none

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

Security and privacy · 10 · 1 first-author · 4 since 2021
YearPublicationVenuePosition
2026 HetAKE: Heterogeneous Authenticated Key Exchange for Post-quantum Migration
Xianhui Lu, Jingnan He, Haiyang Xue, Yamin Liu 0002
ACISP (3)3
2026 Tlcp hardening with formal analysis and post-quantum design
abstract
Abstract Transport Layer Cryptography Protocol (TLCP) is a secure communication protocol developed in China, featuring a dual-certificate architecture and incorporating ShangMi cryptographic algorithms. It has been widely deployed in security-critical domains such as finance, government, and energy. Despite its practical significance, TLCP did not undergo comprehensive formal analysis during its standardization process, leaving potential design-level vulnerabilities insufficiently explored. Moreover, the advent of quantum computing poses fundamental challenges to the classical cryptographic primitives employed by TLCP, motivating the need for both systematic security evaluation and post-quantum enhancements. To address these gaps, we first construct the comprehensive formal model of TLCP, covering certificate-based and identity-based cipher suites as well as its distinctive dual-certificate mechanism, under a realistic threat model and security assumptions that capture both classical and quantum adversaries. Based on this model, we conduct an automated security analysis using ProVerif, identifying nine potential attack vectors and deriving five concrete mitigation recommendations. Finally, motivated by the analysis results and the limitations of incremental fixes against quantum threats, we propose KEMTLCP, a post-quantum secure variant of TLCP that leverages key encapsulation mechanisms (KEMs) for both key exchange and authentication while preserving TLCP’s architectural principles through a novel explicit authentication mechanism. We further provide a security proof for the core authentication mechanism, show that KEMTLCP effectively mitigates the majority of identified vulnerabilities through formal analysis, and evaluate its practical performance.
Jingnan He, Jiangxia Ge, Zhaoxuan Li, Qionglu Zhang, Li Zhou 0013, Xianhui Lu, Senlin Liu, Wenhua Gao
Cybersecur.2
2025 Fiat-Shamir with Rejection and Rotation
Xianhui Lu, Yongjian Yin, Dingding Jia, Jingnan He, Yamin Liu 0002
ACISP (2)4
2025 PolarKyber: Polished Kyber with Smaller Ciphertexts, Greater Security Redundancy, and Lower Decryption Failure Rate
Chen An, Ziyao Liu, Xianhui Lu, Jingnan He
ICICS (1)4
2020 SecureBP from Homomorphic Encryption
abstract
We present a secure backpropagation neural network training model (SecureBP), which allows a neural network to be trained while retaining the confidentiality of the training data, based on the homomorphic encryption scheme. We make two contributions. The first one is to introduce a method to find a more accurate and numerically stable polynomial approximation of functions in a certain interval. The second one is to find a strategy of refreshing ciphertext during training, which keeps the order of magnitude of noise at O˜e33 .
Qinju Liu, Xianhui Lu, Shuai Zhou 0001, Jingnan He, Kunpeng Wang 0001
Secur. Commun. Networks5
2019 Simplified Revocable Hierarchical Identity-Based Encryption from Lattices
Juanyang Zhang, Jingnan He, Huaxiong Wang, Chao Li 0002
CANS3
2018 Understanding and Constructing AKE via Double-Key Key Encapsulation Mechanism
Haiyang Xue, Xianhui Lu, Bao Li 0001, Bei Liang, Jingnan He
ASIACRYPT (2)5
2018 Preprocess-then-NTT Technique and Its Applications to Kyber and NewHope
Shuai Zhou 0001, Haiyang Xue, Daode Zhang, Kunpeng Wang 0001, Xianhui Lu, Bao Li 0001, Jingnan He
Inscrypt7
2017 Dual-Mode Cryptosystem Based on the Learning with Errors Problem
Jingnan He, Wenpan Jing, Bao Li 0001, Xianhui Lu, Dingding Jia
ACISP (2)1
2017 New Framework of Password-Based Authenticated Key Exchange from Only-One Lossy Encryption
Haiyang Xue, Bao Li 0001, Jingnan He
ProvSec3