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首页> 外文期刊>IEEE Wireless Communications >Toward URLLC: A Full Duplex Relay System with Self-Interference Utilization or Cancellation
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Toward URLLC: A Full Duplex Relay System with Self-Interference Utilization or Cancellation

机译:朝向URLLC:一个具有自干扰利用或取消的全双工继电器系统

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摘要

Ultra-reliable low-latency communication (URLLC) is one of the key use cases of 5G wireless communications to facilitate specific application scenarios with stringent latency and reliability demands, such as industrial automation and Tactile Internet. A full duplex (FD) relay with simultaneous transmission and reception in the same frequency band is an effective approach to enhance the reliability of cell-edge user terminals by significantly suppressing self-interference (SI). However, the signal processing latency at FD relay due to SI cancellation, referred to as relaying latency, takes a significant part in the end-to-end latency, and therefore should be minimized, while guaranteeing high reliability. In this article, we first present an up-to-date overview of the end-to-end latency for an FD relay system, addressing physical layer challenges. We investigate the possible solutions in the literature to achieve the goal of URLLC. The efficient solution is to allow a simple amplify-and-forward FD relay mode with low-complexity SI radio frequency and analog cancellations, and process the residual SI alongside the desired signal at the base station in an adaptive manner, rather than being cancelled at relay in the digital domain. Also, the residual SI can be utilized at the base station to enhance the reliability and degree of freedom in signal processing, not necessarily being cancelled as much as possible. The FD relay assisted system with adaptive SI utilization or cancellation enables extended network coverage, enhanced reliability, and reduced latency compared to the existing overview work.
机译:超可靠的低延迟通信(URLLC)是5G无线通信的关键用例之一,以便于具有严格延迟和可靠性需求的特定应用方案,例如工业自动化和触觉互联网。具有同一频带同时传输和接收的全双工(FD)继电器是通过显着抑制自干扰(SI)来增强细胞边缘用户终端的可靠性的有效方法。然而,由于Si消除引起的FD继电器的信号处理等待时间称为中继等待时间,在端到端延迟中取得了很大的部分,因此应最小化,同时保证高可靠性。在本文中,我们首先展示了FD继电器系统的最终延迟的最新概述,解决了物理层挑战。我们调查文献中的可能解决方案,实现URLLC的目标。有效的解决方案是允许具有低复杂性SI射频和模拟消除的简单放大和前进的FD中继模式,并以自适应方式在基站的所需信号旁边处理残差SI,而不是被取消中继在数字域中。而且,可以在基站上使用残差SI以增强信号处理中的可靠性和自由度,不一定尽可能地被取消。与现有的概述工作相比,具有自适应SI利用或取消的FD中继辅助系统能够扩展网络覆盖,增强的可靠性和降低的延迟。

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