Future industrial applications will encompass compelling new use cases requiring stringent performance guarantees over multiple key performance indicators (KPI) such as reliability, dependability, latency, time synchronization, security, etc. Achieving such stringent and diverse service requirements necessitates the design of a special-purpose Industrial Internet of Things (IIoT) network comprising a multitude of specialized functionalities and technological enablers. This article proposes an innovative architecture for such a special-purpose 6G IIoT network incorporating seven functional building blocks categorized into: special-purpose functionalities and enabling technologies. The former consists of Wireless Environment Control, Traffic/Channel Prediction, Proactive Resource Management and End-to-End Optimization functions; whereas the latter includes Synchronization and Coordination, Machine Learning and Artificial Intelligence Algorithms, and Auxiliary Functions. The proposed architecture aims at providing a resource-efficient and holistic solution for the complex and dynamically challenging requirements imposed by future 6G industrial use cases. Selected test scenarios are provided and assessed to illustrate cross-functional collaboration and demonstrate the applicability of the proposed architecture in a wireless IIoT network.
翻译:未来工业应用将包括对多种关键业绩指标(如可靠性、可靠性、延缓性、时间同步性、安全性等)要求严格履约保证的令人信服的新使用案例。实现这种严格和多样化的服务要求,就必须设计一个由多种专门功能和技术促进因素组成的特殊用途物质工业互联网(IIOT)网络。本条为这种特殊用途6G IIOT网络提出了一个创新架构,其中包括以下七个功能组成部分:特殊用途功能和赋能技术。前者包括无线环境控制、交通/气流预测、主动性资源管理和终端至终端优化功能;后者包括同步和协调、机器学习和人工智能等辅助功能。拟议的架构旨在为未来6G工业使用案例所要求的复杂和充满活力的挑战性要求提供一种资源效率高的综合解决方案。提供并评估了某些测试情景,以说明跨功能合作,并展示拟议架构在无线IIOT网络中的适用性。