以太坊的‘精益’路线图将如何在未来4年重塑ETH

ambcryptoPublished on 2026-07-05Last updated on 2026-07-05

Abstract

以太坊开发进入新阶段,研究人员提出了“精益以太坊”路线图,这是一项为期约3-4年的核心协议全面改革计划。该计划旨在通过多项关键技术提升网络的可扩展性、安全性与长期韧性。 核心升级包括引入递归STARKs、量子安全密码学、多维Gas定价模型以及重新设计的状体架构,以提高交易处理速度并降低成本。同时,路线图计划逐步提高网络Gas上限,并利用更可扩展的状体架构来加快最终确定性。 为应对长期技术挑战,开发已着手推进后量子安全协议和可扩展的状体管理。通过测试网评估抗量子密码学,并借助Verkle树、状体到期模型等技术重构状体管理,以降低验证成本、缩短节点同步时间,同时保持去中心化特性。 此外,升级将注重向后兼容,确保现有应用平稳过渡。整体而言,“精益以太坊”路线图致力于为以太坊未来十年的持续发展奠定更高效、安全的基础。

随着研究人员提出旨在优化网络长期演进的多年期全面改革方案‘精益以太坊’,以太坊的开发已进入新阶段。该计划并非单次升级,而是旨在用大约3-4年的时间,逐步替换以太坊(ETH)协议的核心部分。

该计划引入了递归STARK、抗量子密码学、多维Gas和重新设计的网络状态架构,以提高可扩展性和安全性。此外,开发人员预计H星分叉将成为在更广泛变革加速推进之前,以太坊最后一个‘前精益’分叉。

来源:X

该路线图还预期将提高网络的Gas上限。这包括使用更具可扩展性的状态架构来提高交易最终确定速度并降低交易成本。

‘精益’路线图的成功实施有望提升以太坊网络的效率扩展能力。此外,它将保持向后兼容性,从而支持未来十年的持续增长。

精益以太坊背后的基础设施

基于精益以太坊路线图,开发人员正将长期目标转化为实际的协议升级。目前,开发重点集中在抗量子安全协议以及可扩展的状态管理上。

这是以太坊面临的两项最重大的长期技术威胁。开发人员并未等到量子计算成熟,而是已经推出了PQ测试网0-4。这些测试网络将评估抗量子密码学,同时保持与现有钱包的兼容性。

更重要的是,Glamsterdam已通过ePBS、协议简化以及将Gas上限提高到2亿以上,为以太坊的这一面向未来的升级奠定了技术基础。

来源:Galaxy Research

除了构建提供快速安全交易所需的基础设施外,开发人员还在利用Verkle树、状态到期模型和可扩展存储模型来重构状态管理方式。这涉及降低验证成本、缩短节点同步时间,同时保持去中心化功能不受影响。

这是合乎逻辑的后续步骤,因为底层技术需要先成熟起来,以太坊才能在未来十年安全地扩展其可扩展性并降低成本。

这两项举措共同增强了以太坊的长期韧性,同时最大限度减少了对现有应用的干扰。


最终总结

  • 以太坊正在重建其核心协议,以实现更快的扩展性、更强的安全性和长期的网络韧性。
  • ETH旨在通过抗量子升级和更高效的状态管理,使网络面向未来做好准备。

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Related Questions

Q以太坊的‘Lean’路线图是什么,其主要目标是什么?

A以太坊的‘Lean’路线图是一个为期约3-4年的多阶段全面改革计划,旨在更新和替换以太坊协议的核心组件。其主要目标是改善网络的可扩展性、安全性,实现长期网络韧性,同时保持向后兼容性。

Q为了实现其长期目标,Lean路线图中引入了哪些关键技术和升级?

A该路线图引入了递归STARKs、抗量子密码学、多维Gas费用模型以及重新设计的Verkle树等状态架构。此外,还计划通过ePBS、协议简化以及将Gas上限提高到2亿以上,来为以太坊的未来发展奠定技术基础。

QH-star在网络升级计划中扮演什么角色?

AH-star预计将成为以太坊在‘Lean’大规模改革加速之前,最后一个“前Lean”硬分叉。它标志着网络开始向更深远变革过渡的关键节点。

Q在基础设施方面,开发者如何着手应对量子计算等长期技术威胁?

A开发者并未等待量子计算成熟,而是已经启动了PQ Devnets 0-4等测试网络。这些网络用于评估抗量子密码学,旨在确保未来网络的安全,同时保持与现有钱包的兼容性。

Q‘Lean’路线图的成功实施将对以太坊网络效率和用户体验产生什么影响?

A成功实施后,预计将显著提升以太坊网络的效率,包括提高交易速度、降低交易成本、加速节点同步,并加强网络长期的安全性和可扩展性。所有这些改进都将维持向后兼容性,以支持现有应用的持续发展。

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