TY - JOUR
T1 - Delay-Attack-Resistant Byzantine Fault-Tolerant Secret Sharing for Distributed Privacy-Preserving Machine Learning
AU - Li, Zhen
AU - Zhang, Zijian
AU - Wang, Pengbo
AU - Liu, Xuyang
AU - Sun, Jing
N1 - Publisher Copyright:
© 2004-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Verifiable Secret Sharing (VSS) is widely employed in Distributed Privacy-Preserving Machine Learning (DPML) to enable participants to detect invalid secret-shares from malicious participants through cryptographic commitment verification. Nevertheless, most existing VSS schemes can hardly combat Byzantine adversaries in maintaining the global consistency of shares. Although Byzantine Fault Tolerance (BFT) mechanisms have recently been integrated into existing VSS schemes to strengthen global consistency guarantees, this paper identifies a previously overlooked vulnerability: the Adaptive Secret-share Delay Provision (ASDP) strategy. We demonstrate how the ASDP strategy can be exploited to mount a Customized Model Poisoning (CMP) attack against any honest participant. A rigorous theoretical analysis elucidates the operational principles of both the ASDP and the CMP within contemporary VSS schemes featuring BFT protection. To counter this new threat, we propose an Efficient Distributed VSS (EDV) scheme. We formally prove the validity, liveness, global consistency, and privacy guarantees of EDV. Extensive experiments confirm that EDV not only neutralizes ASDP-induced vulnerabilities but also achieves superior computational and communication efficiency compared to state-of-the-art VSS schemes.
AB - Verifiable Secret Sharing (VSS) is widely employed in Distributed Privacy-Preserving Machine Learning (DPML) to enable participants to detect invalid secret-shares from malicious participants through cryptographic commitment verification. Nevertheless, most existing VSS schemes can hardly combat Byzantine adversaries in maintaining the global consistency of shares. Although Byzantine Fault Tolerance (BFT) mechanisms have recently been integrated into existing VSS schemes to strengthen global consistency guarantees, this paper identifies a previously overlooked vulnerability: the Adaptive Secret-share Delay Provision (ASDP) strategy. We demonstrate how the ASDP strategy can be exploited to mount a Customized Model Poisoning (CMP) attack against any honest participant. A rigorous theoretical analysis elucidates the operational principles of both the ASDP and the CMP within contemporary VSS schemes featuring BFT protection. To counter this new threat, we propose an Efficient Distributed VSS (EDV) scheme. We formally prove the validity, liveness, global consistency, and privacy guarantees of EDV. Extensive experiments confirm that EDV not only neutralizes ASDP-induced vulnerabilities but also achieves superior computational and communication efficiency compared to state-of-the-art VSS schemes.
KW - Adaptive Secret-share Delay Provision
KW - Byzantine Fault Tolerance
KW - Custermized Model Poisoning
KW - Global Consistency
KW - Verifiable Secret Sharing
UR - https://www.scopus.com/pages/publications/105041977082
U2 - 10.1109/TDSC.2026.3701888
DO - 10.1109/TDSC.2026.3701888
M3 - Article
AN - SCOPUS:105041977082
SN - 1545-5971
JO - IEEE Transactions on Dependable and Secure Computing
JF - IEEE Transactions on Dependable and Secure Computing
ER -