With the rapid evolution of metaverse technologies, numerous metaverse applications have arisen for various purposes and scenarios. This makes interoperability across metaverses becomes one of the fundamental technology enablers in the metaverse space. The aim of interoperability is to provide a seamless experience for users to interact with metaverses. However, the development of cross-metaverse interoperability is still in its initial stage in both industry and academia. In this paper, we review the state-of-the-art cross-metaverse interoperability schemes. These schemes are designed for specific interoperating scenarios and do not generalize for all types of metaverses. To this end, we propose MetaOpera, a generalized cross-metaverse interoperability protocol. By connecting to the MetaOpera, users, and objects in metaverses that rely on centralized servers or decentralized blockchains are able to interoperate with each other. We also develop a proof-of-concept implementation for MetaOpera, evaluate its performance, and compare it with a state-of-the-art cross-metaverse scheme based on Sidechains. Simulation results demonstrate that the size of cross-metaverse proof and the average time of cross-metaverse transactions using the proposed solution are respectively about eight times and three times smaller than the Sidechains scheme. This paper also suggests a number of open issues and challenges faced by cross-metaverse interoperability that may inspire future research.
翻译:随着逆向技术的迅速演变,出现了多种不同的用途和情景应用。这使得跨逆向互操作性成为逆向空间的基本技术促进因素之一。互操作性的目的是为用户提供与正向互动的无缝经验。然而,跨元互操作性的发展仍处于工业和学术界的初始阶段。在本文件中,我们审查了最先进的跨元互操作性计划。这些计划是为具体的互操作性设想设计的,而不是对所有类型的逆向计划加以概括。为此,我们提出MetaOpera,即一个普遍的跨天体互操作性协议。通过连接MetaOpera、用户和依赖中央服务器或分散式的断层链的元体对象,可以相互操作。我们还为MetaOpera开发了一套最先进的跨元互操作性计划,评估其绩效,并将其与基于侧端链的跨端互操作性计划进行比较。模拟结果显示,跨端和跨面的跨面系统交易的规模也表明,跨面结构的跨面和跨面文件的跨期交易可能分别显示跨时代的跨时代和跨时代。