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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Wireless Channel Dynamics and Robustness for Ultra-Reliable Low-Latency Communications
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Wireless Channel Dynamics and Robustness for Ultra-Reliable Low-Latency Communications

机译:用于超可靠的低延迟通信的无线信道动态和鲁棒性

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Interactive, immersive, and other timing-critical applications demand ultra-reliable low-latency communication (URLLC). To build wireless communication systems that can support these applications, understanding the relevant characteristics of the wireless medium is paramount. Although wireless channel characteristics and dynamics have been extensively studied, it is important to revisit these concepts in the context of the strict demands of low-latency and ultra-high reliability. In this paper, we bring a modeling approach from robust control to wireless communication-the wireless channel characteristics are given a nominal model around which we allow for some quantified uncertainty. We propose certain key URLLC-relevant parameters along which the model uncertainty is to be bounded. To validate the nominal model of the spatially independent quasi-static Rayleigh fading, we take an in-depth look at the spatial and temporal correlations based on Jakes' model. We find that although the Rayleigh fading process is band-limited, the quasi-static assumption is not safe for relay selection even well within a single coherence time. We also find that under reasonable conditions, the spatial correlation of channels provide a fading distribution that is not too far off from an independent spatial fading model. In addition, we look at the impact of these channel models on cooperative communication-based systems. We find that while spatial-diversity-based techniques are necessary to combat the adverse effects of fading, time-diversity-based techniques are necessary to be robust against unmodeled errors. Robust URLLC systems need to operate with both an adequate SNR margin and a time margin through repetitions.
机译:互动,沉浸式和其他时序关键的应用需求超可靠的低延迟通信(URLLC)。为了构建可以支持这些应用的无线通信系统,了解无线介质的相关特性是至关重要的。虽然已经广泛研究了无线信道特性和动态,但在严格对低延迟和超高可靠性的情况下重新审视这些概念非常重要。在本文中,我们将鲁棒控制的建模方法从鲁棒控制到无线通信 - 无线信道特性被赋予围绕其标称模型,我们允许一些量化的不确定性。我们提出了某些关键URLLC相关参数,其中模型不确定性是界限的。为了验证空间独立的准静态瑞利衰落的标称模型,我们深入了解基于Jakes'模型的空间和时间相关性。我们发现,尽管瑞利衰落过程是带式限制的,但是准静态假设对于在单个相干时间内甚至均匀的继电器选择不安全。我们还发现,在合理的条件下,通道的空间相关性提供了从独立的空间衰落模型的衰落分布。此外,我们看看这些信道模型对基于协作通信的系统的影响。我们发现,虽然基于空间 - 多样性的技术是为了对抗衰落的不利影响,但是基于时间的基础技术对于对未拼件的误差具有稳健。强大的URLLC系统需要通过重复使用足够的SNR余量和时间余量。

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