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References:
[1] Nakamoto S. Bitcoin: A peer-to-peer electronic cash system. Bitcoin, 2008. https://bitcoin.org/bitcoin.pdf
[2] Lamport L, Shostak R, Pease M. The Byzantine generals problem. Microsoft, 1982. https://www.microsoft.com/en-us/research/wp-
content/uploads/2016/12/The-Byzantine-Generals-Problem.pdf
[3] Fan J, Yi LT, Shu JW. Research on the technologies of Byzantine system. Journal of Software, 2013,24(6):1346−1360.
[4] Nelson M. The Byzantine General’s problem: An agreement protocol for distributed system. Drdobbs, 2008. http://www.drdobbs.
com/cpp/the-byzantine-generals-problem/206904396
[5] Lamport L. The weak Byzantine generals problem. Journal of the ACM (JACM), 1983,30(3):668−676.
[6] Fedotova N, Veltri L. Byzantine generals problem in the light of P2P computing. In: Proc. of the Int’l Conf. on Mobile &
Ubiquitous Systems: Networking & Services. 2006. 1−5.
[7] Reischuk R. A new solution for the Byzantine Generals problem. Decision Support Systems, 1985,1(2):182.
[8] Yuan Y, Wang FY. Blockchain: The state of the art and future trends. Acta Automatica Sinica, 2016,42(4):481−494 (in Chinese
with English abstract).
[9] Yu L, Jin Y. Research on splitting technology of blockchain data. Chinese High Technology Letters, 2017,27(Z2):875−888 (in
Chinese with English abstract).
[10] Yu L, Zhao XF, Jin Y, Cai HY, Wei B, Hu B. Low powered blockchain consensus protocols based on consistent Hash. In: Proc. of
the Frontiers of Information Technology & Electronic Engineering. 2018. http://www.jzus.zju.edu.cn/openiptxt.php?doi=10.1631/
FITEE.1800119
[11] Even S, Yacobi Y. Relations among public key signature systems. Technical Report, # 175, Haifa: Comp. Sci. Oept., Technion,
1980
[12] Even S. A protocol for signing contracts. ACM SIGACT News, 1983,15(1):34−39.
[13] Goldreich O. A simple protocol for signing contracts. In: Proc. of the Advances in Cryptology. New York: Springer, 1984.
133−136.
[14] Franklin MK, Reiter MK. Fair exchange with a semi-trusted third party. In: Proc. of the 4th ACM Conf. on Computer and
Communications Security. New York: ACM, 1997. 1−5.
[15] Al-Saggaf AA, Ghouti L. Efficient abuse-free fair contract-signing protocol based on an ordinary crisp commitment scheme. IET
Information Security, 2015,9(1):50−58.
[16] Wan Z, Deng RH, Lee D. Electronic contract signing without using trusted third party. In: Proc. of the Int’l Conf. on Network and
System Security. New York: Springer Int’l Publishing, 2015. 386−394.
[17] Ben-Or M, Goldreich O, Micali S, et al. A fair protocol for signing contracts. IEEE Trans. on Information Theory, 1990,36(1):
40−46.
[18] Asokan N, Shoup V, Waidner M. Optimistic fair exchange of digital signatures. IEEE Journal on Selected Areas in
Communications, 2000,18(4):593−610.
[19] Huang X, Mu Y, Susilo W, et al. Preserving transparency and accountability in optimistic fair exchange of digital signatures. IEEE
Trans. on Information Forensics and Security, 2011,6(2):498−512.
[20] Wang G. An abuse-free fair contract-signing protocol based on the RSA signature. IEEE Trans. on Information Forensics and
Security, 2010,5(1):158−168.
[21] Sun YB, Gu LZ, Zheng SH, Yang YX, Sun Y. An aggregate signature based multi-party contract signing protocol. Journal of
Beijing University of Posts and Telecommunications, 2011,34(2):8−11 (in Chinese with English abstract).
[22] Zhang Q, Wen QY. A new fair-exchange protocol. Journal of Beijing University of Posts and Telecommunications, 2006,29(5):
63−65 (in Chinese with English abstract).
[23] Liu WY, Zhang S, Zhang JX. Fair contract signing protocol based on publicly verifiable secret sharing. Computer Science,
2009,36(2):111−113 (in Chinese with English abstract).
[24] Huang H, Li KC, Chen X. A fair three-party contract singing protocol based on blockchain. In: Wen S, et al. eds. Proc. of the CSS
2017. LNCS 10581, 2017. 72−85.
[25] Liu J, Li W, Karame GO, et al. Towards fairness of cryptocurrency payments. arXiv preprint arXiv:1609.07256, 2016.