Byzantine fault-tolerant (BFT) systems are able to maintain the availability and integrity of IoT systems, in presence of failure of individual components, random data corruption or malicious attacks. Fault-tolerant systems in general are essential in assuring continuity of service for mission critical applications. However, their implementation may be challenging and expensive. In this study, IoT Systems with Byzantine Fault-Tolerance are considered. Analytical models and solutions are presented as well as a detailed analysis for the evaluation of the availability. Byzantine Fault Tolerance is particularly important for blockchain mechanisms, and in turn for IoT, since it can provide a secure, reliable and decentralized infrastructure for ...
Services offered by computing systems continue to play a crucial role in our every day lives. This t...
Byzantine fault tolerance (BFT) is a powerful technique for building software that tolerates arbitra...
IoT comprises a network of physical objects embedded with internet-connected sensors, actuators, and...
Designing systems tolerant to faults is crucial to assure continuity of service for mission critical...
Blockchain-based solutions for Internet of Things (IoT) networks constitutes a current trend in cybe...
Cyber-physical systems and the Internet of things (IoT) are becoming an integral part of the digital...
The current boom in the Internet of Things (IoT) is changing daily life in many ways, from wearable ...
IoT devices have grown rapidly over the past few years. IoT devices are mostly connected to a centra...
textByzantine fault-tolerance techniques are useful because they tolerate arbitrary faults regardle...
With the growth of computer services in Internet, the availability and integrity of these services, ...
In response to new and innovating blockchain-based systems with Internet of Things (IoT), there is a...
In this paper we review and analyze redundancy-based fault-tolerant techniques for the IoT as a para...
© 2020 IEEE. Providing an acceptable level of security for Internet of Things (IoT)-based critical i...
To enhance the consensus performance of Blockchain in the Green Internet of Things (G-IoT) and impro...
Itis a critical matter for a blockchain system whether a Byzantine fault tolerance (BFT) can be guar...
Services offered by computing systems continue to play a crucial role in our every day lives. This t...
Byzantine fault tolerance (BFT) is a powerful technique for building software that tolerates arbitra...
IoT comprises a network of physical objects embedded with internet-connected sensors, actuators, and...
Designing systems tolerant to faults is crucial to assure continuity of service for mission critical...
Blockchain-based solutions for Internet of Things (IoT) networks constitutes a current trend in cybe...
Cyber-physical systems and the Internet of things (IoT) are becoming an integral part of the digital...
The current boom in the Internet of Things (IoT) is changing daily life in many ways, from wearable ...
IoT devices have grown rapidly over the past few years. IoT devices are mostly connected to a centra...
textByzantine fault-tolerance techniques are useful because they tolerate arbitrary faults regardle...
With the growth of computer services in Internet, the availability and integrity of these services, ...
In response to new and innovating blockchain-based systems with Internet of Things (IoT), there is a...
In this paper we review and analyze redundancy-based fault-tolerant techniques for the IoT as a para...
© 2020 IEEE. Providing an acceptable level of security for Internet of Things (IoT)-based critical i...
To enhance the consensus performance of Blockchain in the Green Internet of Things (G-IoT) and impro...
Itis a critical matter for a blockchain system whether a Byzantine fault tolerance (BFT) can be guar...
Services offered by computing systems continue to play a crucial role in our every day lives. This t...
Byzantine fault tolerance (BFT) is a powerful technique for building software that tolerates arbitra...
IoT comprises a network of physical objects embedded with internet-connected sensors, actuators, and...