波束形成中继器在工业环境下超可靠低延迟通信的波束选择

M. S. Ibrahim, Saeed R. Khosravirad, Jakub Mazgula, H. Viswanathan, N. Sidiropoulos
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引用次数: 1

摘要

本文研究了波束形成毫米波中继器在无线工业控制系统中的应用。我们研究了毫米波在工厂车间的部署,工厂车间有几条生产线和大量设备,这些设备通过集线器接入点(AP)定期接收来自控制器的数据包。我们建议使用波束成形中继器作为所谓的多传输接收点(multi-TRP)技术的替代方案,在这种技术中,从集线器TRP到中继器的无线前传链路取代了到不同TRP的庞大有线链路。然后演示了提议的无线TRP扩展整个工厂的通信覆盖范围,同时通过中继器和集线器TRP信号的空中组合提高端到端链路的可靠性。我们提出了将trp和波束关联到每个用户的优化问题,以最小化总体调度延迟,同时满足所有用户的可靠通信。为了解决这个问题,我们提出了一种低复杂度的贪心算法,通过大量的仿真表明,与现有的文献方案相比,该算法显著降低了系统级调度延迟。在我们的模拟中,大多数物体对无线电波传播的影响都是使用射线追踪工具精确建模的。
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Beam Selection for Ultra-Reliable Low-Latency Communication in Industrial Environment with Beamforming Repeaters
This paper investigates the use of beamforming millimeter-wave (mmWave) repeaters in wireless industrial control systems. We study deployment of mmWave in a factory floor with several production lines and a multitude of devices that periodically receive packets from the controller via a hub access point (AP). We propose to use beamforming repeaters as an alternative to the so-called multi-transmission reception point (multi-TRP) technology, where wireless fronthaul links from the hub TRP to the repeaters substitute the bulky wired links to the different TRPs. The proposed wireless TRP is then demonstrated to extend communication coverage across the factory floor, while improving end-to-end link reliability via over-the-air combining of the signal from the repeater and the hub TRP. We formulate the optimization problem of associating TRPs and beams to each user for the objective of minimizing the overall scheduling latency while satisfying reliable communication to all users. To tackle such a problem, we propose a low-complexity greedy algorithm, which through extensive simulations is shown to significantly reduce system- level scheduling latency compared to the existing schemes in the literature. In our simulations, the effects of most objects on radio wave propagation are accurately modeled using a ray-tracing tool.
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