AbstractThis paper presents a consensus protocol resilient to Byzantine failures. It uses signed and certified messages and is based on two underlying failure detection modules. The first is a muteness failure detection module of the class ♢M. The second is a reliable Byzantine behaviour detection module. More precisely, the first module detects processes that stop sending messages, while processes experiencing other non-correct behaviours (i.e., Byzantine) are detected by the second module. The protocol is resilient to F faulty processes, F⩽min(⌊(n−1)/2⌋,C) (where C is the maximum number of faulty processes that can be tolerated by the underlying certification service).The approach used to design the protocol is new. While usual Byzantine ...
Byzantine process is a process that --intentionally or not-- behaves arbitrarily (Byzantine failures...
Byzantine process is a process that --intentionally or not-- behaves arbitrarily (Byzantine failures...
Byzantine faults in distributed systems can have very destructive consequences for services built on...
This paper presents a consensus protocol resilient to Byzantine failures. It uses signed and certifi...
This paper studies the consensus problem in byzantine asynchronous distributed systems. In such syst...
This paper studies the consensus problem in byzantine asynchronous distributed systems. In such syst...
AbstractThis paper presents a consensus protocol resilient to Byzantine failures. It uses signed and...
AbstractA consensus protocol enables a system of n asynchronous processes, some of them faulty, to r...
Unreliable fault detectors can be used to solve the consensus problem in asyn-chronous distributed s...
A consensus protocol enables a system of $n$ aynchronous processes, some of which are faulty, to re...
AbstractA consensus protocol enables a system of n asynchronous processes, some of them faulty, to r...
Unreliable fault detectors can be used to solve the consensus problem in asynchronous distributed sy...
Reviewed by Paulo J. SousaByzantine consensus in asynchronous message-passing systems has been shown...
International audienceThis paper presents a simple protocol that solves the authenticated ByzantineC...
International audienceThis paper presents a simple protocol that solves the authenticated ByzantineC...
Byzantine process is a process that --intentionally or not-- behaves arbitrarily (Byzantine failures...
Byzantine process is a process that --intentionally or not-- behaves arbitrarily (Byzantine failures...
Byzantine faults in distributed systems can have very destructive consequences for services built on...
This paper presents a consensus protocol resilient to Byzantine failures. It uses signed and certifi...
This paper studies the consensus problem in byzantine asynchronous distributed systems. In such syst...
This paper studies the consensus problem in byzantine asynchronous distributed systems. In such syst...
AbstractThis paper presents a consensus protocol resilient to Byzantine failures. It uses signed and...
AbstractA consensus protocol enables a system of n asynchronous processes, some of them faulty, to r...
Unreliable fault detectors can be used to solve the consensus problem in asyn-chronous distributed s...
A consensus protocol enables a system of $n$ aynchronous processes, some of which are faulty, to re...
AbstractA consensus protocol enables a system of n asynchronous processes, some of them faulty, to r...
Unreliable fault detectors can be used to solve the consensus problem in asynchronous distributed sy...
Reviewed by Paulo J. SousaByzantine consensus in asynchronous message-passing systems has been shown...
International audienceThis paper presents a simple protocol that solves the authenticated ByzantineC...
International audienceThis paper presents a simple protocol that solves the authenticated ByzantineC...
Byzantine process is a process that --intentionally or not-- behaves arbitrarily (Byzantine failures...
Byzantine process is a process that --intentionally or not-- behaves arbitrarily (Byzantine failures...
Byzantine faults in distributed systems can have very destructive consequences for services built on...