Future smart factories are expected to deploy an emerging dynamic Virtual Reality (VR) applications with high bandwidth wireless connections in the THz communication bands, where a factory worker can follow activities through 360{\deg}video streams with high quality resolution. THz communications, while promising as a high bandwidth wireless communication technology, are however known for low fault tolerance, and are sensible to external factors. Since THz channel states are in general hard to estimate, what is needed is a system that can adaptively react to transceiver configurations in terms of coding and modulation. To this end, we propose an adaptive control plane that can help us configure the THz communication system. The control plane implements a workflow algorithm designed to adaptively choose between various coding and modulation schemes depending on THz channel states. The results show that an adaptive control plane can improve throughput and signal resolution quality, with theoretically zeroed bit error probability and a maximum achievable throughput in the scenarios analayzed.
翻译:未来智能工厂预计将在Thz通讯带中部署新兴的动态虚拟现实(VR)应用程序,其带宽无线连接度高,工厂工人可以通过高分辨率的360\deg}视频流跟踪活动。Thz通信虽然有高频无线通信技术的希望,但以低错容度而著称,而且对外部因素也很明智。由于Thz频道的状态一般难以估计,因此所需要的是一个能够在编码和调制方面对收发器配置作出适应性反应的系统。为此,我们提议了一个可帮助我们配置Thz通信系统的适应性控制平面。控制平面采用了一种工作流程算法,旨在根据Thz频道的状态在各种编码和调制方案之间作出适应性选择。结果显示,适应性控制平面可以改进吞并和信号解析质量,理论上零位误率概率和在被拉链的情景中实现的最大吞吐量。