首页> 外文会议>2019 2nd International Conference on Computer Applications amp; Information Security >Performance Evaluation of Proof-of-Work and Collatz Conjecture Consensus Algorithms
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Performance Evaluation of Proof-of-Work and Collatz Conjecture Consensus Algorithms

机译:工作量证明和Collat​​z猜想共识算法的性能评估

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摘要

Blockchain is the underlying technology of Bitcoin that allows a peer-to-peer distributed ledger with security and immutability. The core of a blockchain is the consensus mechanism that sets the rule for nodes in handling the shared data. Implementation of the consensus algorithm depends on the nature of targeted business environment. In this research, the performance of two consensus algorithms, Proof-of-Work (PoW) and Proof-of-Collatz Conjecture (PCC), are studied in the context of a private blockchain. A quantitative analysis on the execution time, deployment time, and latency time are done for 1, 10, 100, 1000, and 10000 transactions and the results are presented. The results shows that PCC takes only (1/1000)th of the execution time that is required for PoW for these different sets of transactions. In addition, these timings are recorded for ten repeated executions for the same sets of transactions, and found that PCC has a nearly consistent execution time.
机译:区块链是比特币的基础技术,它允许具有安全性和不变性的对等分布式账本。区块链的核心是共识机制,该机制为节点处理共享数据设置规则。共识算法的实现取决于目标业务环境的性质。在这项研究中,在私有区块链的上下文中研究了两种共识算法的性能,即工作量证明(PoW)和冲突量证明猜想(PCC)。对1、10、100、1000和10000个事务的执行时间,部署时间和等待时间进行了定量分析,并给出了结果。结果显示PCC仅采用(1/1000)\ n 。此外,对于相同的事务集,这些时序记录了十次重复执行,并发现PCC具有几乎一致的执行时间。

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