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Dynamic Communication QoS Design for Real-Time Wireless Control Systems

机译:用于实时无线控制系统的动态通信QoS设计

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In the coming fifth-generation (5G) cellular networks, ultra-reliable and low-latency communication (URLLC) is treated as an indispensable service to enable real-time wireless control systems. However, the extremely high quality-of-service (QoS) in URLLC causes significant wireless resource consumption. Moreover, to obtain good control performance may not always require extremely high communication QoS. In this paper, we propose a communication-control co-design scheme to reduce wireless resource consumption, where we obtain a dynamic communication QoS design method to reduce the energy consumption by jointly using extremely high QoS and a relatively low QoS. In this scheme, we first explore the control process served by different communication QoS levels and find that the whole control process can be divided into two phases, where different QoS levels have their advantages in different phases. Then, we obtain a threshold to decide when the extremely high QoS or relatively low QoS should be provided by communications. Simulation results demonstrate that our method can effectively reduce communication energy consumption while maintaining good control performance.
机译:在即将到来的第五代(5G)蜂窝网络中,超可靠和低延迟通信(URLLC)被视为不可或缺的服务,以实现实时无线控制系统。然而,URLLC中极高的服务质量(QoS)导致了显着的无线资源消耗。此外,为了获得良好的控制性能可能并不总是需要极高的通信QoS。在本文中,我们提出了一种通信控制协同设计方案来减少无线资源消耗,在那里我们获得动态通信QoS设计方法,以通过共同使用极高的QoS和相对低的QoS来降低能量消耗。在该方案中,我们首先探讨不同通信QoS水平服务的控制过程,发现整个控制过程可以分为两个阶段,其中不同的QoS水平在不同的阶段的优点。然后,我们获得一个阈值来决定何时应该通过通信提供极高的QoS或相对低的QoS。仿真结果表明,我们的方法可以有效地降低通信能耗,同时保持良好的控制性能。

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