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内核工作证明:分布式访问控制协议的民主低能耗共识

Proof of Kernel Work: a democratic low-energy consensus for distributed access-control protocols.

作者信息

Lundbæk Leif-Nissen, Janes Beutel Daniel, Huth Michael, Jackson Stephen, Kirk Laurence, Steiner Robert

机构信息

Imperial College London, London SW7 2AZ, UK.

Oxford University, Oxford OX1 2JD, UK.

出版信息

R Soc Open Sci. 2018 Aug 8;5(8):180422. doi: 10.1098/rsos.180422. eCollection 2018 Aug.

Abstract

We adjust the Proof of Work (PoW) consensus mechanism used in Bitcoin and Ethereum so that we can build on its strength while also addressing, in part, some of its perceived weaknesses. Notably, our work is motivated by the high energy consumption for mining PoW, and we want to restrict the use of PoW to a configurable, expected size of nodes, as a function of the local blockchain state. The approach we develop for this rests on three pillars: (i) (PoKW), a means of dynamically reducing the set of nodes that can participate in the solving of PoW puzzles such that an adversary cannot increase his attack surface because of such a reduction; (ii) , a realization of this PoW reduction through an adaptation of existing blockchain and enterprise technology stacks; and (iii) , the use of techniques from artificial intelligence to make our approach adaptive to system, network and attack dynamics. We develop here, in detail, the first pillar and illustrate the second pillar through a real use case, a pilot project done with Porsche on controlling permissions to vehicle and data log accesses. We also discuss pertinent attack vectors for PoKW consensus and their mitigation. Moreover, we sketch how our approach may lead to more democratic PoKW-based blockchain systems for public networks that may inherit the resilience of blockchains based on PoW.

摘要

我们调整了比特币和以太坊中使用的工作量证明(PoW)共识机制,以便在利用其优势的同时,部分解决一些被认为存在的弱点。值得注意的是,我们的工作是受PoW挖矿的高能耗所驱动,并且我们希望将PoW的使用限制在一个可配置的、预期规模的节点上,该规模取决于本地区块链状态。我们为此开发的方法基于三个支柱:(i)工作量证明减少(PoKW),一种动态减少可参与解决PoW谜题的节点集的方法,这样对手就不会因为这种减少而增加其攻击面;(ii)实现,通过对现有区块链和企业技术栈进行适配来实现这种PoW减少;(iii)人工智能化,使用人工智能技术使我们的方法能够适应系统、网络和攻击动态。我们在此详细阐述第一个支柱,并通过一个实际用例(与保时捷合作开展的关于控制车辆和数据日志访问权限的试点项目)来说明第二个支柱。我们还讨论了PoKW共识的相关攻击向量及其缓解措施。此外,我们概述了我们的方法如何可能导致基于PoKW的更民主的区块链系统用于公共网络,这些公共网络可能继承基于PoW的区块链的弹性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6db/6124024/705724ce1d78/rsos180422-g1.jpg

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