Backscatter Communication (BackCom), which is based on passive reflection and modulation of an incident radio-frequency (RF) wave, has emerged as a cutting-edge technological paradigm for self-sustainable Internet-of-things (IoT). Nevertheless, the contemporary BackCom systems are limited to short-range and low data rate applications only, thus rendering them insufficient on their own to support pervasive connectivity among the massive number of IoT devices. Meanwhile, wireless networks are rapidly evolving towards the smart radio paradigm. In this regard, reconfigurable intelligent surfaces (RISs) have come to the forefront to transform the wireless propagation environment into a fully controllable and customizable space in a cost-effective and energy-efficient manner. Targeting the sixth-generation (6G) horizon, we anticipate the integration of RISs into BackCom systems as a new frontier for enabling 6G IoT networks. In this article, for the first time in the open literature, we provide a tutorial overview of RIS-assisted BackCom (RIS-BackCom) systems. Specifically, we introduce the four different variants of RIS-BackCom and identify the potential improvements that can be achieved by incorporating RISs into BackCom systems. In addition, owing to the unrivaled effectiveness of non-orthogonal multiple access (NOMA), we present a case study on an RIS-assisted NOMA-enhanced BackCom system. Finally, we outline the way forward for translating this disruptive concept into real-world applications.
翻译:以被动反射和调控事件无线电频率波(RF)为基础的后向通信(BackCom),是自持型互联网(IoT)的先进技术范例。然而,当代的后向通信系统仅局限于短程和低数据率应用,因此本身不足以支持大量IoT设备之间的普遍连通。与此同时,无线网络正在迅速演变为智能无线电模式。在这方面,可重新整合的智能表面(RIS)已进入前沿,以具有成本效益和节能的方式将无线传播环境转化为完全可控的可定制空间。但针对第六代(6G)地平线,我们预计RIS将纳入后向通信系统整合,作为启用6G IoT网络的新疆域。在公开文献中,我们首次对RIS-协助的后向(RIS-Com)系统(RIS-Com)进行了介绍。具体地说,我们将四种不同的无线传播环境转换为可完全控制且可定制的、可定制的空间应用空间。我们预计第六代(6G)地将RIS-Com系统整合成一个新的连接系统,并查明目前由我们所完成的系统实现的后向前向后向后转的变式系统。