As the Metaverse is iteratively being defined, its potential to unleash the next wave of digital disruption and create real-life value becomes increasingly clear. With distinctive features of immersive experience, simultaneous interactivity, and user agency, the Metaverse has the capability to transform all walks of life. However, the enabling technologies of the Metaverse, i.e., digital twin, artificial intelligence, blockchain, and extended reality, are known to be energy-hungry, therefore raising concerns about the sustainability of its large-scale deployment and development. This article proposes Green Metaverse Networking for the first time to optimize energy efficiencies of all network components for Metaverse sustainable development. We first analyze energy consumption, efficiency, and sustainability of energy-intensive technologies in the Metaverse. Next, focusing on computation and networking, we present major advancements related to energy efficiency and their integration into the Metaverse. A case study of energy conservation by incorporating semantic communication and stochastic resource allocation in the Metaverse is presented. Finally, we outline the critical challenges of Metaverse sustainable development, thereby indicating potential directions of future research towards the green Metaverse.
翻译:在对元数据进行迭代定义时,它释放下一波数字中断和创造实际生活价值的潜力越来越明显。随着隐性经验、同时互动和用户机构的显著特点,元数据具有改变生活各行各业的能力。然而,元数据系统的赋能技术,即数字双、人工智能、链条和扩展的现实,已知是能源短缺,因此引起人们对其大规模部署和发展的可持续性的关切。本文章首次提出绿色变现网络,以优化元数据可持续发展所有网络组成部分的能源效率。我们首先分析元数据中能源消耗、效率和能源密集技术的可持续性。接下来,我们侧重于计算和联网,介绍了能源效率及其融入元数据中的主要进展。我们介绍了通过在元数据中采用语系通信和随机资源分配来节能的案例研究。我们概述了元数据可持续发展的关键挑战,从而指明了未来研究向绿色元数据系统的方向发展的潜在方向。