Proof of Luck: an Efficient Blockchain Consensus Protocol

Mitar Milutinovic, Warren He, Howard Wu, Maxinder S. Kanwal
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引用次数: 228

Abstract

In the paper, we present designs for multiple blockchain consensus primitives and a novel blockchain system, all based on the use of trusted execution environments (TEEs), such as Intel SGX-enabled CPUs. First, we show how using TEEs for existing proof of work schemes can make mining equitably distributed by preventing the use of ASICs. Next, we extend the design with proof of time and proof of ownership consensus primitives to make mining energy- and time-efficient. Further improving on these designs, we present a blockchain using a proof of luck consensus protocol. Our proof of luck blockchain uses a TEE platform's random number generation to choose a consensus leader, which offers low-latency transaction validation, deterministic confirmation time, negligible energy consumption, and equitably distributed mining. Lastly, we discuss a potential protection against up to a constant number of compromised TEEs.
运气证明:一个高效的区块链共识协议
在本文中,我们提出了多个区块链共识原语和一个新的区块链系统的设计,所有这些都基于可信执行环境(tee)的使用,例如支持英特尔sgx的cpu。首先,我们展示了如何将tee用于现有的工作量证明方案,从而通过防止使用asic来公平分配挖矿。接下来,我们使用时间证明和所有权证明共识原语扩展设计,以使挖矿具有能源和时间效率。进一步改进这些设计,我们提出了一个使用运气证明共识协议的区块链。我们的运气证明区块链使用TEE平台的随机数生成来选择共识领导者,它提供低延迟的交易验证,确定性的确认时间,可忽略的能耗和公平分配的挖掘。最后,我们讨论了一种潜在的保护措施,可以防止多达恒定数量的tee受损。
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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