TY - JOUR
T1 - When Blockchain Meets Tor
T2 - Enabling Automatically Distributed Blind Choosing of Relay Nodes in Anonymous Communication
AU - Sun, Jiahang
AU - Wu, Yan
AU - Zhang, Zijian
AU - Li, Meng
AU - Wang, Mengyu
AU - Xiao, Yao
AU - Zhu, Liehuang
AU - Si, Chengxiang
N1 - Publisher Copyright:
© 2008-2012 IEEE.
PY - 2026
Y1 - 2026
N2 - Anonymous communication services represent a critical class of privacy-preserving infrastructure within the service computing paradigm, where trustworthiness, resilience, and quantifiable quality-of-service (QoS) are foundational requirements. Tor-the most widely deployed anonymous communication service-relies on a centralized Directory Authority (DA) component that functions as a monolithic trust anchor. This architectural choice introduces severe service-level vulnerabilities: single points of failure degrade availability (QoS), metadata exposure compromises privacy (a core service attribute), and centralized control enables censorship-directly violating service computing principles of decentralization, fault tolerance, and user-centric trust. We propose AuDi-BCoRN (Automatically Distributed Blind Choosing of Relay Nodes), a service-native re-architecture that transforms Tor's directory layer into a decentralized, self-governing service ecosystem grounded in the tenets of service computing. By integrating blockchain as a decentralized trust service and using smart contracts for automated service coordination, AuDi-BCoRN eliminates centralized dependencies while closely matching native Tor performance: on a 3% tornettools-generated Tor topology, the empirical CDFs of TTFB, latency, and throughput are nearly indistinguishable from Tor beyond the median, while demonstrably strengthening service integrity against DoS, censorship, and traffic-analysis threats.
AB - Anonymous communication services represent a critical class of privacy-preserving infrastructure within the service computing paradigm, where trustworthiness, resilience, and quantifiable quality-of-service (QoS) are foundational requirements. Tor-the most widely deployed anonymous communication service-relies on a centralized Directory Authority (DA) component that functions as a monolithic trust anchor. This architectural choice introduces severe service-level vulnerabilities: single points of failure degrade availability (QoS), metadata exposure compromises privacy (a core service attribute), and centralized control enables censorship-directly violating service computing principles of decentralization, fault tolerance, and user-centric trust. We propose AuDi-BCoRN (Automatically Distributed Blind Choosing of Relay Nodes), a service-native re-architecture that transforms Tor's directory layer into a decentralized, self-governing service ecosystem grounded in the tenets of service computing. By integrating blockchain as a decentralized trust service and using smart contracts for automated service coordination, AuDi-BCoRN eliminates centralized dependencies while closely matching native Tor performance: on a 3% tornettools-generated Tor topology, the empirical CDFs of TTFB, latency, and throughput are nearly indistinguishable from Tor beyond the median, while demonstrably strengthening service integrity against DoS, censorship, and traffic-analysis threats.
KW - Anonymous Communication Networks
KW - Blockchain
KW - Distributed Blind Choosing
KW - Relay Nodes
KW - Smart Contracts
KW - Tor
UR - https://www.scopus.com/pages/publications/105045260359
U2 - 10.1109/TSC.2026.3713765
DO - 10.1109/TSC.2026.3713765
M3 - Article
AN - SCOPUS:105045260359
SN - 1939-1374
JO - IEEE Transactions on Services Computing
JF - IEEE Transactions on Services Computing
ER -