Metaverse has rekindled human beings' desire to further break space-time barriers by fusing the virtual and real worlds. However, security and privacy threats hinder us from building a utopia. A metaverse embraces various techniques, while at the same time inheriting their pitfalls and thus exposing large attack surfaces. Blockchain, proposed in 2008, was regarded as a key building block of metaverses. it enables transparent and trusted computing environments using tamper-resistant decentralized ledgers. Currently, blockchain supports Decentralized Finance (DeFi) and Non-fungible Tokens (NFT) for metaverses. However, the power of a blockchain has not been sufficiently exploited. In this article, we propose a novel trustless architecture of blockchain-enabled metaverse, aiming to provide efficient resource integration and allocation by consolidating hardware and software components. To realize our design objectives, we provide an On-Demand Trusted Computing Environment (OTCE) technique based on local trust evaluation. Specifically, the architecture adopts a hypergraph to represent a metaverse, in which each hyperedge links a group of users with certain relationship. Then the trust level of each user group can be evaluated based on graph analytics techniques. Based on the trust value, each group can determine its security plan on demand, free from interference by irrelevant nodes. Besides, OTCEs enable large-scale and flexible application environments (sandboxes) while preserving a strong security guarantee.
翻译:突变再次激发了人类通过粉碎虚拟和现实世界来进一步打破空间时间障碍的愿望。 然而,安全和隐私威胁阻碍我们建设乌托邦。 一个逆向包含各种技术,同时继承了陷阱,从而暴露了巨大的攻击表面。 2008年提出的链条被视为一个关键构件的元体构件。它使得透明和可信赖的计算环境能够使用抗腐蚀的分散分类账。目前,链条支持分散金融(DeFi)和不易变形 Tokens(NFT)来代表一个变形。然而,一个块链的力量并没有得到充分的利用。在本篇文章中,我们提出了一个新的无信任的链化元体结构,目的是通过整合硬件和软件组成部分来提供有效的资源整合和分配。为了实现我们的设计目标,我们提供了一种基于地方信任评价的“On-Demanand Trust Economic Environt ”技术。具体来说,该结构采用高调调调调调调调调调调调调调调调,将每个用户群体与某种特定关系联系起来。 然后,每个用户的用户的组合都无法信任程度地决定其安全水平。