当信任节省能源:信任证明(PoT)区块链的参考框架

Leila Bahri, Sarunas Girdzijauskas
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引用次数: 29

摘要

区块链作为实现安全点对点(P2P)交易系统的有前途的基础设施,正在吸引许多技术、金融和工业方面的关注。区块链的核心是工作量证明(PoW),这是一种基于计算能力展示的无需信任的领导者选举机制。PoW在无信任的P2P环境中提供区块链安全性,但代价是浪费大量能源。在这项研究工作中,我们对区块链用例下PoW的能量消耗提出了质疑,在区块链用例中,节点之间存在某种形式的信任。我们提出了一个信任证明(PoT)区块链,其中基于以分散方式出现的信任图来评估网络中的对等信任,该信任图由区块链本身编码和管理。然后,该信托被用作PoW难度的放弃;也就是说,你在网络中证明的信任越多,你做的工作就越少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
When Trust Saves Energy: A Reference Framework for Proof of Trust (PoT) Blockchains
Blockchains are attracting the attention of many technical, financial, and industrial parties, as a promising infrastructure for achieving secure peer-to-peer (P2P) transactional systems. At the heart of blockchains is proof-of-work (PoW), a trustless leader election mechanism based on demonstration of computational power. PoW provides blockchain security in trusless P2P environments, but comes at the expense of wasting huge amounts of energy. In this research work, we question this energy expenditure of PoW under blockchain use cases where some form of trust exists between the peers. We propose a Proof-of-Trust (PoT) blockchain where peer trust is valuated in the network based on a trust graph that emerges in a decentralized fashion and that is encoded in and managed by the blockchain itself. This trust is then used as a waiver for the difficulty of PoW; that is, the more trust you prove in the network, the less work you do.
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