塑造以太坊的未来:探索工作量证明和权益证明共识中的能源消耗

R. Asif, Syed Raheel Hassan
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引用次数: 0

摘要

以太坊(ETH)是一个流行的Layer-1区块链平台,已被用于创建去中心化应用程序(dApps)和智能合约。以太坊2.0或Serenity是对网络的重大更新,旨在解决可扩展性,安全性和能源效率方面的许多问题。权益证明(PoS)共识方法将取代工作量证明(PoW)机制,这是以太坊2.0的主要新功能之一。鉴于PoS不需要矿工进行密集的数学计算来验证交易,它有可能比PoW更节能。此外,由于引入了一种名为“Casper”的新机制,这次以太坊升级也将更加安全,该机制将确保验证者始终就区块链的状态达成一致。本文首先讨论了以太坊面临的当前问题,包括工作量证明(PoW)共识机制的局限性以及对更有效和可扩展的解决方案的需求。在本研究中,我们研究了以太坊2.0引入的主要变化,例如新的共识方法(权益证明)和分片链的添加(以太坊2.0),以及相关的开发时间表,好处和社区对这次升级的批评。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shaping the future of Ethereum: exploring energy consumption in Proof-of-Work and Proof-of-Stake consensus
Ethereum (ETH) is a popular Layer-1 blockchain platform that has been used to create decentralized applications (dApps) and smart contracts. Ethereum 2.0, or Serenity, is a significant update to the network that intends to address numerous issues with scalability, security, and energy efficiency. The Proof-of-Stake (PoS) consensus method will replace the Proof-of-Work (PoW) mechanism, which is one of the major new features of Ethereum 2.0. Given that PoS doesn’t require miners to do intensive mathematical calculations in order to validate transactions, it has the potential to be more energy-efficient than PoW. Additionally, this Ethereum upgrade will also be more secure due to the introduction of a new mechanism called “Casper” that will ensure that validators are always in agreement on the state of the blockchain. The paper begins by discussing the current issues facing Ethereum, including the limitations of the Proof of Work (PoW) consensus mechanism and the need for more efficient and scalable solutions. In this study, we peered at the major changes introduced by Ethereum 2.0, such as the new consensus method (Proof-of-Stake) and the addition of shard chains (Ethereum 2.0), as well as the associated development timelines, benefits and the community criticism on this upgrade.
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