High-performance real-time wireless connectivity is at the heart of the Industrial Internet-of-Things (IIoT). Realizing wireless closed-loop control is crucial for various mission-critical IIoT systems. Existing wireless technologies fall short of meeting the stringent performance requirements of closed-loop control. This paper presents a novel wireless solution, called \textsf{GALLOP}, for realizing closed-loop control over multi-hop or single-hop networks. \textsf{GALLOP} adopts a pragmatic design approach for addressing the challenges of wireless closed-loop control. Key design aspects of \textsf{GALLOP} include control-aware bi-directional scheduling for cyclic exchange, robust retransmission techniques based on cooperative multi-user diversity and low-overhead signaling for scalable operation. \textsf{GALLOP} has been specifically designed for control loops that are closed over the whole network with dynamics on the order of few milliseconds. Performance evaluation based on extensive system-level simulations and hardware implementation on a Bluetooth 5 testbed demonstrates that \textsf{GALLOP} provides high-performance connectivity with very low and deterministic latency, very high reliability and high scalability, to meet the stringent requirements of wireless closed-loop control for versatile IIoT applications.
翻译:高性能实时无线连接是工业互联网电话(IIOT)的核心。实现无线闭路控制对于各种任务关键IIOT系统至关重要。 现有的无线技术没有达到闭路控制严格的性能要求。 本文提出了一个创新的无线解决方案, 叫做\ textsf{GALLOP}, 用于实现对多点或单点网络的闭路控制。\ textsf{GALLOP} 采用务实的设计方法应对无线闭路控制的挑战。 实现无线闭路控制对于各种任务关键II 系统至关重要。 现有的无线技术包括双向控制双向时间安排, 包括循环交换的双向控制, 以合作多用户多样性为基础的强有力的再传输技术, 以及可缩放操作的低超头信号。\ textsf{GALLLOP} 专门设计了整个网络的闭路控制循环, 动态以几毫秒的速度排列。 基于广泛系统级模拟和硬件操作的系统级模拟, 蓝牙5号高性、高性、高性、高性、高性能测试性能、高性、高性、高性、高性、高性能测试要求。