DEXON: A Highly Scalable, Decentralized DAG-Based Consensus Algorithm
November 19, 2018 Β· Declared Dead Β· π IACR Cryptology ePrint Archive
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Authors
Tai-Yuan Chen, Wei-Ning Huang, Po-Chun Kuo, Hao Chung, Tzu-Wei Chao
arXiv ID
1811.07525
Category
cs.CR: Cryptography & Security
Cross-listed
cs.DB,
cs.DC
Citations
25
Venue
IACR Cryptology ePrint Archive
Last Checked
4 months ago
Abstract
A blockchain system is a replicated state machine that must be fault tolerant. When designing a blockchain system, there is usually a trade-off between decentralization, scalability, and security. In this paper, we propose a novel blockchain system, DEXON, which achieves high scalability while remaining decentralized and robust in the real-world environment. We have two main contributions. First, we present a highly scalable sharding framework for blockchain. This framework takes an arbitrary number of single chains and transforms them into the \textit{blocklattice} data structure, enabling \textit{high scalability} and \textit{low transaction confirmation latency} with asymptotically optimal communication overhead. Second, we propose a single-chain protocol based on our novel verifiable random function and a new Byzantine agreement that achieves high decentralization and low latency.
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