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SBFT is a state of the art Byzantine fault tolerant permissioned blockchain system that addresses the challenges of scalability, decentralization and world-scale geo-replication.
The Byzantine generals problem
Leslie Lamport, Robert Shostak, and Marshall Pease · 1982
Earlier work this paper cites.
Impossibility of distributed consensus with one faulty process
Michael J. Fischer, Nancy A. Lynch, and Michael S. Paterson · 1985
Earlier work this paper cites.
Easy impossibility proofs for distributed consensus problems
Michael J. Fischer, Nancy A. Lynch, and Michael Merritt · 1986
Earlier work this paper cites.
Consensus in the presence of partial synchrony
Cynthia Dwork, Nancy Lynch, and Larry Stockmeyer · 1988
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A digital signature based on a conventional encryption function
Ralph C. Merkle · 1988
Earlier work this paper cites.
Viewstamped replication: A new primary copy method to support highly-available distributed systems
Brian M. Oki and Barbara H. Liskov · 1988
Earlier work this paper cites.
The rampart toolkit for building high-integrity services
Michael K. Reiter · 1995
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Byzantine quorum systems
Dahlia Malkhi and Michael Reiter · 1997
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The part-time parliament
Leslie Lamport · 1998
Earlier work this paper cites.
Practical Byzantine fault tolerance
Miguel Castro and Barbara Liskov · 1999
Earlier work this paper cites.
Random oracles in Constantinople: Practical asynchronous Byzantine agreement using cryptography (extended abstract)
Christian Cachin, Klaus Kursawe, and Victor Shoup · 2000
Earlier work this paper cites.
A one round protocol for tripartite Diffie-Hellman
Antoine Joux · 2000
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Practical threshold signatures
Victor Shoup · 2000
Earlier work this paper cites.
BASE: Using abstraction to improve fault tolerance
Rodrigo Rodrigues, Miguel Castro, and Barbara Liskov · 2001
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Trusted third parties are security holes
Nick Szabo · 2001
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Threshold signatures, multisignatures and blind signatures based on the gap-Diffie-Hellman-group signature scheme
Alexandra Boldyreva · 2002
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Practical Byzantine fault tolerance and proactive recovery
Miguel Castro and Barbara Liskov · 2002
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Separating agreement from execution for Byzantine fault tolerant services
Jian Yin, Jean-Philippe Martin, Arun Venkataramani, Lorenzo Alvisi, and Mike Dahlin · 2003
Earlier work this paper cites.
Short signatures from the weil pairing
Dan Boneh, Ben Lynn, and Hovav Shacham · 2004
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Fault-scalable Byzantine fault-tolerant services
Michael Abd-El-Malek, Gregory R. Ganger, Garth R. Goodson, Michael K. Reiter, and Jay J. Wylie · 2005
Earlier work this paper cites.
Scaling Byzantine fault-tolerant replication to wide area networks
Yair Amir, Claudiu Danilov, Jonathan Kirsch, John Lane, Danny Dolev, Cristina Nita-Rotaru, Josh Olsen, and David John Zage · 2006
Earlier work this paper cites.
HQ replication: A hybrid quorum protocol for Byzantine fault tolerance
James Cowling, Daniel Myers, Barbara Liskov, Rodrigo Rodrigues, and Liuba Shrira · 2006
Earlier work this paper cites.
Fast Byzantine consensus
Jean-Philippe Martin and Lorenzo Alvisi · 2006
Earlier work this paper cites.
Attested append-only memory: Making adversaries stick to their word
Byung-Gon Chun, Petros Maniatis, Scott Shenker, and John Kubiatowicz · 2007
Earlier work this paper cites.
Zyzzyva: Speculative Byzantine fault tolerance
Ramakrishna Kotla, Lorenzo Alvisi, Mike Dahlin, Allen Clement, and Edmund Wong · 2007
Cited alongside, same era.
Upright cluster services
Allen Clement, Manos Kapritsos, Sangmin Lee, Yang Wang, Lorenzo Alvisi, Mike Dahlin, and Taylor Riche · 2009
Cited alongside, same era.
Making Byzantine fault tolerant systems tolerate Byzantine faults
Allen Clement, Edmund Wong, Lorenzo Alvisi, Mike Dahlin, and Mirco Marchetti · 2009
Cited alongside, same era.
TrInc: Small trusted hardware for large distributed systems
Dave Levin, John R. Douceur, Jacob R. Lorch, and Thomas Moscibroda · 2009
Cited alongside, same era.
Bitcoin: A peer-to-peer electronic cash system
Satoshi Nakamoto · 2009
Cited alongside, same era.
Steward: Scaling Byzantine fault-tolerant replication to wide area networks
Yair Amir, Claudiu Danilov, Danny Dolev, Jonathan Kirsch, John Lane, Cristina Nita-Rotaru, Josh Olsen, and David Zage · 2010
Scalable byzantine consensus via hardware-assisted secret sharing
Jian Liu, Wenting Li, Ghassan O. Karame, and N. Asokan · 2016
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XFT: Practical fault tolerance beyond crashes
Shengyun Liu, Paolo Viotti, Christian Cachin, Vivien Quéma, and Marko Vukolic · 2016
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ALGORAND: The efficient and democratic ledger
Silvio Micali · 2016
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The honey badger of bft protocols
Andrew Miller, Yu Xia, Kyle Croman, Elaine Shi, and Dawn Song · 2016
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Hybrid consensus: Efficient consensus in the permissionless model
Rafael Pass and Elaine Shi · 2016
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Keeping authorities ”honest or bust” with decentralized witness cosigning
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Cited alongside, same era.
High-Speed Software Implementation of the Optimal Ate Pairing over Barreto–Naehrig Curves
Jean-Luc Beuchat, Jorge E. González-Díaz, Shigeo Mitsunari, Eiji Okamoto, Francisco Rodríguez-Henríquez, and Tadanori Teruya · 2010
Cited alongside, same era.
Refined quorum systems
Rachid Guerraoui and Marko Vukolic · 2010
Cited alongside, same era.
Zyzzyva: Speculative Byzantine fault tolerance
Ramakrishna Kotla, Lorenzo Alvisi, Mike Dahlin, Allen Clement, and Edmund Wong · 2010
Cited alongside, same era.
Prime: Byzantine replication under attack
Yair Amir, Brian A. Coan, Jonathan Kirsch, and John Lane · 2011
Cited alongside, same era.
Cheapbft: Resource-efficient byzantine fault tolerance
Rüdiger Kapitza, Johannes Behl, Christian Cachin, Tobias Distler, Simon Kuhnle, Seyed Vahid Mohammadi, Wolfgang Schröder-Preikschat, and Klaus Stengel · 2012
Cited alongside, same era.
Viewstamped replication revisited
Barbara Liskov and James Cowling · 2012
Cited alongside, same era.
E. Syta, I. Tamas, D. Visher, D. I. Wolinsky, P. Jovanovic, L. Gasser, N. Gailly, I. Khoffi, and B. Ford · 2016
Later among the works it cites.
Ethereum: A secure decentralized generalized transaction ledger
Gavin Wood · 2016
Later among the works it cites.
Istanbul bft (ibft), 2017
2017
Later among the works it cites.
Revisiting fast practical byzantine fault tolerance
Ittai Abraham, Guy Gueta, Dahlia Malkhi, Lorenzo Alvisi, Ramakrishna Kotla, and Jean-Philippe Martin · 2017
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Updating key size estimations for pairings
Razvan Barbulescu and Sylvain Duquesne · 2017
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Minimal slashing conditions
Vitalik Buterin · 2017
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Blockchain consensus protocols in the wild
Christian Cachin and Marko Vukolic · 2017
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Algorand: Scaling byzantine agreements for cryptocurrencies
Yossi Gilad, Rotem Hemo, Silvio Micali, Georgios Vlachos, and Nickolai Zeldovich · 2017
Later among the works it cites.
Challenges with Assessing the Impact of NFS Advances on the Security of Pairing-Based Cryptography
Alfred Menezes, Palash Sarkar, and Shashank Singh · 2017
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A Byzantine fault-tolerant ordering service for the hyperledger fabric blockchain platform
João Sousa, Alysson Bessani, and Marko Vukolic · 2017
Later among the works it cites.
Scalable bias-resistant distributed randomness
E. Syta, P. Jovanovic, E. K. Kogias, N. Gailly, L. Gasser, I. Khoffi, M. J. Fischer, and B. Ford · 2017
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Revisiting fast practical byzantine fault tolerance: Thelma, velma, and zelma
Ittai Abraham, Guy Gueta, Dahlia Malkhi, and Jean-Philippe Martin · 2018
Closest in time.
Hyperledger fabric: a distributed operating system for permissioned blockchains
Elli Androulaki, Artem Barger, Vita Bortnikov, Christian Cachin, Konstantinos Christidis, Angelo De Caro, David Enyeart, Christopher Ferris, Gennady Laventman, Yacov Manevich, Srinivasan Muralidharan, Chet Murthy, Binh Nguyen, Manish Sethi, Gari Singh, Keith Smith, Alessandro Sorniotti, Chrysoula Stathakopoulou, Marko Vukolic, Sharon Weed Cocco, and Jason Yellick · 2018
Closest in time.
Why decentralization matters
Chris Dixon · 2018
Closest in time.
Beat: Asynchronous bft made practical
Sisi Duan, Michael K. Reiter, and Haibin Zhang · 2018
Closest in time.
Decentralization in bitcoin and ethereum networks
Adem Efe Gencer, Soumya Basu, Ittay Eyal, Robbert van Renesse, and Emin Gün Sirer · 2018
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Omniledger: A secure, scale-out, decentralized ledger via sharding
Eleftherios Kokoris-Kogias, Philipp Jovanovic, Linus Gasser, Nicolas Gailly, Ewa Syta, and Bryan Ford · 2018
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A byzantine fault-tolerant ordering service for the hyperledger fabric blockchain platform
J. Sousa, A. Bessani, and M. Vukolic · 2018
Closest in time.