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Reaching Consensus in the Byzantine Empire: A Comprehensive Review of BFT Consensus Algorithms

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arxiv 2204.03181 v3 pith:AV4LF3TB submitted 2022-04-07 cs.DC

classification cs.DC
keywords algorithmsconsensusalgorithmbyzantinereviewacademiaalikeapproaches
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Byzantine fault-tolerant (BFT) consensus algorithms are at the core of providing safety and liveness guarantees for distributed systems that must operate in the presence of arbitrary failures. Recently, numerous new BFT algorithms have been proposed, not least due to the traction blockchain technologies have garnered in the search for consensus solutions that offer high throughput, low latency, and robust system designs. In this paper, we conduct a systematic survey of selected and distinguished BFT algorithms that have received extensive attention in academia and industry alike. We perform a qualitative comparison among all algorithms we review considering message and time complexities. Furthermore, we decompose each consensus algorithm into its constituent subprotocols for replication and view change backed by intuitive figures to illustrate the message-passing pattern. We also elaborate on the strengths and weaknesses of each algorithm as compared to the state-of-the-art approaches.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Decentralization in PoS Blockchain Consensus: Quantification and Advancement

    cs.DC 2025-04 conditional novelty 4.0 of 10

    Square-root and logarithmic stake-weighting functions raise decentralization metrics by about 51% and 132% respectively across ten PoS blockchains, but the claims depend on an unresolved Sybil-cost assumption.

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