论文标题
无线边缘智能启用Web 3.0的统一区块链语义框架
A Unified Blockchain-Semantic Framework for Wireless Edge Intelligence Enabled Web 3.0
论文作者
论文摘要
Web 3.0启用用户生成的内容和用户选择的当局。借助分散的无线边缘计算体系结构,Web 3.0允许用户读取,写入和自己的内容。启用Web 3.0目标的核心技术是区块链,该技术通过以分散和透明的方式记录内容来提供安全服务。但是,链上的爆炸记录的内容和快速增长的用户数量导致越来越多的计算和存储资源消耗。一个有希望的范式是分析内容的语义信息,这些信息可以准确地传达所需的含义而不会消耗许多资源。在本文中,我们为无线边缘智能Web 3.0提出了一个统一的区块链语义生态系统框架。我们的框架包括六个关键组成部分来交换语义需求。然后,我们引入了基于Oracle的语义机制证明,以实现Web 3.0生态系统对语义验证算法的链和链之间的交互,同时维护服务安全性。 Oracle上的基于自适应的深钢筋学习机制旨在提高互动效率,这可以促进Web 3.0生态系统来应对各种语义需求。最后,提出了一个案例研究,以表明所提出的框架可以根据各种语义要求动态调整甲骨文设置。
Web 3.0 enables user-generated contents and user-selected authorities. With decentralized wireless edge computing architectures, Web 3.0 allows users to read, write, and own contents. A core technology that enables Web 3.0 goals is blockchain, which provides security services by recording content in a decentralized and transparent manner. However, the explosion of on-chain recorded contents and the fast-growing number of users cause increasingly unaffordable computing and storage resource consumption. A promising paradigm is to analyze the semantic information of contents that can convey precisely the desired meanings without consuming many resources. In this article, we propose a unified blockchain-semantic ecosystems framework for wireless edge intelligence-enabled Web 3.0. Our framework consists of six key components to exchange semantic demands. We then introduce an Oracle-based proof of semantic mechanism to implement on-chain and off-chain interactions of Web 3.0 ecosystems on semantic verification algorithms while maintaining service security. An adaptive Deep Reinforcement Learning-based sharding mechanism on Oracle is designed to improve interaction efficiency, which can facilitate Web 3.0 ecosystems to deal with varied semantic demands. Finally, a case study is presented to show that the proposed framework can dynamically adjust Oracle settings according to varied semantic demands.