Dubbed as the next-generation Internet, the metaverse is a virtual world that allows users to interact with each other or objects in real-time using their avatars. The metaverse is envisioned to support novel ecosystems of service provision in an immersive environment brought about by an intersection of the virtual and physical worlds. The native AI systems in metaverse will personalized user experience over time and shape the experience in a scalable, seamless, and synchronous way. However, the metaverse is characterized by diverse resource types amid a highly dynamic demand environment. In this paper, we propose the case study of virtual education in the metaverse and address the unified resource allocation problem amid stochastic user demand. We propose a stochastic optimal resource allocation scheme (SORAS) based on stochastic integer programming with the objective of minimizing the cost of the virtual service provider. The simulation results show that SORAS can minimize the cost of the virtual service provider while accounting for the users' demands uncertainty.
翻译:作为下一代互联网,逆向是一个虚拟世界,使用户能够相互交流,或使用其动因进行实时交流。根据设想,逆向将支持在虚拟和物理世界交汇产生的暗淡环境中提供服务的新生态系统。原生的全新人工智能系统将随着时间的流逝而使用户经历个性化,并以可扩展、无缝和同步的方式塑造经验。然而,逆向的特点是资源类型不同,而且需求环境非常活跃。在本文件中,我们提议进行关于元化虚拟教育的案例研究,并解决在随机用户需求中统一分配资源的问题。我们提出基于随机整数编程的最佳资源分配计划(SORAS),目的是最大限度地降低虚拟服务提供商的成本。模拟结果表明,SORAS可以在计算用户需求不确定性的同时,将虚拟服务提供商的成本降到最低。