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Deconstructing the Blockchain to Approach Physical Limits

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arxiv 1810.08092 v4 pith:27RM4SZF submitted 2018-10-18 cs.CR cs.DCcs.ITmath.IT

classification cs.CRcs.DCcs.ITmath.IT
keywords blockchainconfirmationphysicalapproachlimitscapacitydeconstructingdelay
verification ladder T0 review T1 audit T2 compute T3 formal

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Transaction throughput, confirmation latency and confirmation reliability are fundamental performance measures of any blockchain system in addition to its security. In a decentralized setting, these measures are limited by two underlying physical network attributes: communication capacity and speed-of-light propagation delay. Existing systems operate far away from these physical limits. In this work we introduce Prism, a new proof-of-work blockchain protocol, which can achieve 1) security against up to 50% adversarial hashing power; 2) optimal throughput up to the capacity C of the network; 3) confirmation latency for honest transactions proportional to the propagation delay D, with confirmation error probability exponentially small in CD ; 4) eventual total ordering of all transactions. Our approach to the design of this protocol is based on deconstructing the blockchain into its basic functionalities and systematically scaling up these functionalities to approach their physical limits.

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Cited by 1 Pith paper

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

  1. Eunomia: A Permissionless Parallel Chain Protocol Based on Logical Clock

    cs.DC 2019-08 reject novelty 5.0 of 10

    Eunomia orders blocks across parallel blockchains using a virtual logical clock and fine-grained UTXO sharding, claiming security against up to half adversarial computing power and near-optimal throughput.

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