SoK: Distributed Randomness Beacons

Kevin Choi, A. Manoj, Joseph Bonneau
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引用次数: 6

Abstract

Motivated and inspired by the emergence of blockchains, many new protocols have recently been proposed for generating publicly verifiable randomness in a distributed yet secure fashion. These protocols work under different setups and assumptions, use various cryptographic tools, and entail unique trade-offs and characteristics. In this paper, we systematize the design of distributed randomness beacons (DRBs) as well as the cryptographic building blocks they rely on. We evaluate protocols on two key security properties, unbiasability and unpredictability, and discuss common attack vectors for predicting or biasing the beacon output and the countermeasures employed by protocols. We also compare protocols by communication and computational efficiency. Finally, we provide insights on the applicability of different protocols in various deployment scenarios and highlight possible directions for further research.
SoK:分布式随机信标
受到区块链出现的激励和启发,最近提出了许多新的协议,以分布式但安全的方式生成可公开验证的随机性。这些协议在不同的设置和假设下工作,使用各种加密工具,并需要独特的权衡和特征。在本文中,我们系统地设计了分布式随机信标(drb)及其所依赖的加密构建块。我们评估了协议的两个关键安全属性,即不偏性和不可预测性,并讨论了用于预测或偏置信标输出的常见攻击向量以及协议采用的对策。我们还比较了协议的通信和计算效率。最后,我们提供了不同协议在各种部署场景中的适用性的见解,并强调了进一步研究的可能方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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