TY - GEN
T1 - Covert Communication in Blockchain
T2 - 11th IEEE International Conference on Big Data Security on Cloud, BigDataSecurity 2025
AU - Wei, Zhentao
AU - Liu, Yingxue
AU - Lei, Yin
AU - Chen, Zhuo
AU - Yuan, Xiangbo
AU - Wei, Yihang
AU - Gai, Keke
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Blockchain covert channels have become a cutting-edge technique of information concealment that allows anonymous communication, censorship resistance, and privacy protection. The processes of blockchain-based covert communication are methodically examined in this survey, such as information embedding, transaction screening, and transaction obfuscation. In particular, this work analyzes temporal and storage covert channels in blockchain covert communication embedding mechanisms. To improve security and thwart discovery, transaction screening methods are also investigated, covering dynamic label creation, encryption-based screening, and fixed address screening. In order to enhance concealment, we have studied obfuscation strategies at several levels, including transaction fields, structures, and patterns. Blockchain covert communication has advanced, but there are still a few issues, which involve computational complexity, trade-offs between efficiency and secrecy, and a limited embedding capacity. This work offers a thorough analysis of blockchain covert channels and explores the means of adoptability and efficacy.
AB - Blockchain covert channels have become a cutting-edge technique of information concealment that allows anonymous communication, censorship resistance, and privacy protection. The processes of blockchain-based covert communication are methodically examined in this survey, such as information embedding, transaction screening, and transaction obfuscation. In particular, this work analyzes temporal and storage covert channels in blockchain covert communication embedding mechanisms. To improve security and thwart discovery, transaction screening methods are also investigated, covering dynamic label creation, encryption-based screening, and fixed address screening. In order to enhance concealment, we have studied obfuscation strategies at several levels, including transaction fields, structures, and patterns. Blockchain covert communication has advanced, but there are still a few issues, which involve computational complexity, trade-offs between efficiency and secrecy, and a limited embedding capacity. This work offers a thorough analysis of blockchain covert channels and explores the means of adoptability and efficacy.
KW - blockchain
KW - covert communication
UR - https://www.scopus.com/pages/publications/105007558420
U2 - 10.1109/BigDataSecurity66063.2025.00014
DO - 10.1109/BigDataSecurity66063.2025.00014
M3 - Conference contribution
AN - SCOPUS:105007558420
T3 - Proceedings - 2025 IEEE 11th Conference on Big Data Security on Cloud, BigDataSecurity 2025
SP - 89
EP - 95
BT - Proceedings - 2025 IEEE 11th Conference on Big Data Security on Cloud, BigDataSecurity 2025
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 9 May 2025 through 11 May 2025
ER -