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PrestigeBFT: Revolutionizing View Changes in BFT Consensus Algorithms with Reputation Mechanisms

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arxiv 2307.08154 v1 pith:7WBHONPI submitted 2023-07-16 cs.DC

classification cs.DC
keywords prestigebftserversleaderspassiveprotocolsthroughputunderview-change
verification ladder T0 review T1 audit T2 compute T3 formal

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This paper proposes PrestigeBFT, a novel leader-based BFT consensus algorithm that addresses the weaknesses of passive view-change protocols. Passive protocols blindly rotate leadership among servers on a predefined schedule, potentially selecting unavailable or slow servers as leaders. PrestigeBFT proposes an active view-change protocol using reputation mechanisms that calculate a server's potential correctness based on historic behavior. The active protocol enables servers to campaign for leadership by performing reputation-associated work. As such, up-to-date and correct servers with good reputations are more likely to be elected as leaders as they perform less work, whereas faulty servers with bad reputations are suppressed from becoming leaders by being required to perform more work. Under normal operation, PrestigeBFT achieves 5X higher throughput than the baseline that uses passive view-change protocols. In addition, PrestigeBFT remains unaffected under benign faults and experiences only a 24% drop in throughput under a variety of Byzantine faults, while the baseline throughput drops by 62% and 69%, respectively.

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Cited by 1 Pith paper

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  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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