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The Security Ingredients for Correct and Byzantine Fault-tolerant Blockchain Consensus Algorithms

机译:正确和拜占庭容错区块ClouchChain共识算法的安全成分

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The blockchain technology revolution and the use of blockchains in various applications have resulted in many companies and programmers developing and customizing specific fit-for-purpose consensus algorithms. Security and performance are determined by the chosen consensus algorithm; hence, the reliability and security of these algorithms must be assured and tested, which requires an understanding of all the security assumptions that make such algorithms correct and byzantine fault-tolerant.This paper studies the "security ingredients" that enable a given consensus algorithm to achieve safety, liveness, and byzantine fault tolerance (BFT) in both permissioned and permissionless blockchain systems. The key contributions of this paper are the organization of these requirements and a new taxonomy that describes the requirements for security. The CAP Theorem is utilized to explain important tradeoffs between consistency and availability in consensus algorithm design, which are crucial depending on the specific application of a given algorithm. This topic has also been explored previously by De Angelis. However, this paper expands that prior explanation and dilemma of consistency vs. availability and then combines this with Buterin’s Trilemma to complete the overall exposition of tradeoffs.
机译:区块链技术革命和各种应用中的区块链导致了许多公司和程序员开发和定制了特定的适合用途共识算法。安全性和性能由所选择的共识算法确定;因此,必须保证和测试这些算法的可靠性和安全性,这需要了解使这种算法正确和拜占庭容错的所有安全假设。本文研究了使得给定共识算法的“安全成分”。在许可和许可层间系统中实现安全性,活力和拜占庭式容错(BFT)。本文的主要贡献是组织这些要求和新分类法,描述了安全要求。 CAP定理用于解释共识算法设计中的一致性和可用性之间的重要权衡,这取决于给定算法的特定应用。这一主题也被De Angelis探讨了。但是,本文扩展了一致性的解释和一致性与可用性的困境,然后将其与Buterin的Trilimma结合在一起,以完成权衡的整体博览会。

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