论文标题
可重新配置的智能表面辅助授予授予访问
Reconfigurable Intelligent Surface-Aided Grant-Free Access for Uplink URLLC
论文作者
论文摘要
可重新配置的智能表面(RISS)最近被视为未来通信系统的新兴技术之一,它利用其反射元素的调整功能。在本文中,我们研究了基于RIS的架构在超级可靠的低延迟通信(URLLC)上下文中对上行链路传感器数据传输的潜力。特别是,我们为工业控制方案提出了无RIS辅助的赠款访问计划,旨在利用多样性并提高可靠性绩效。我们考虑上行链路传输的两种不同资源分配方案,即专用和共享的插槽分配,以及三种不同的接收器类型,即零效率,最小平方误差(MMSE)以及MMSE-Succercessive-Succercessive Intrencove Interperience取消接收器。我们从停电概率方面进行的广泛数值评估证明了我们的方法在可靠性,资源效率和容量以及RIS属性的不同配置方面的收益。与高级接收器相结合的RIS辅助授予访问计划被证明是上行链路URLLC的良好选择。
Reconfigurable intelligent surfaces (RISs) have been recently considered as one of the emerging technologies for future communication systems by leveraging the tuning capabilities of their reflecting elements. In this paper, we investigate the potential of an RIS-based architecture for uplink sensor data transmission in an ultra-reliable low-latency communication (URLLC) context. In particular, we propose an RIS-aided grant-free access scheme for an industrial control scenario, aiming to exploit diversity and achieve improved reliability performance. We consider two different resource allocation schemes for the uplink transmissions, i.e., dedicated and shared slot assignment, and three different receiver types, namely the zero-forcing, the minimum mean squared error (MMSE), and the MMSE-successive interference cancellation receivers. Our extensive numerical evaluation in terms of outage probability demonstrates the gains of our approach in terms of reliability, resource efficiency, and capacity and for different configurations of the RIS properties. An RIS-aided grant-free access scheme combined with advanced receivers is shown to be a well-suited option for uplink URLLC.