论文标题

联合通信和传感:模型和使用MIMO的潜力

Joint Communication and Sensing: Models and Potential of Using MIMO

论文作者

Fang, Xinran, Feng, Wei, Chen, Yunfei, Ge, Ning, Zhang, Yan

论文摘要

设想了第六代(6G)网络以整合通信和传感功能,以提高频谱效率(SE)并支持爆炸性的新颖应用。尽管无线通信和无线电传感的相似之处为它们的组合奠定了基础,但它们之间仍然存在相当不相容的兴趣。为了同时确保通信能力和感应精度,多输入和多输出(MIMO)技术起着重要的作用,因为它具有空间波束形成和波形形状的独特能力。但是,MIMO的配置还带来了高硬件成本,高功耗和高信号处理的复杂性。如何有效地应用MIMO以实现平衡的沟通和感应性能仍然是开放的。在这项调查中,我们在MIMO的背景下讨论了联合交流和传感(JCA)。我们首先概述了MIMO在无线通信和雷达传感过程中的作用。然后,我们详细介绍了交流和感应共存和集成的当前进步。随后将三种新型的JCAS MIMO模型结合在一起,即云随机访问网络(C-RAN),无人机(UAV)和可重构的智能表面(RISS)讨论。从实际的角度检查了JCA中MIMO的潜力和挑战,并提供了有希望的解决方案。在物联网(IoT)的巨大潜力的推动下,我们还在物联网方案中指定了JCA,并讨论了将JCAS应用于IoT的独特性。最后,概述了开放的问题,以设想在不久的将来是无处不在,聪明和安全的JCAS网络。

The sixth-generation (6G) network is envisioned to integrate communication and sensing functions, so as to improve the spectrum efficiency (SE) and support explosive novel applications. Although the similarities of wireless communication and radio sensing lay the foundation for their combination, there is still considerable incompatible interest between them. To simultaneously guarantee the communication capacity and the sensing accuracy, the multiple-input and multiple-output (MIMO) technique plays an important role due to its unique capability of spatial beamforming and waveform shaping. However, the configuration of MIMO also brings high hardware cost, high power consumption, and high signal processing complexity. How to efficiently apply MIMO to achieve balanced communication and sensing performance is still open. In this survey, we discuss joint communication and sensing (JCAS) in the context of MIMO. We first outline the roles of MIMO in the process of wireless communication and radar sensing. Then, we present current advances in both communication and sensing coexistence and integration in detail. Three novel JCAS MIMO models are subsequently discussed by combining cutting-edge technologies, i.e., cloud random access networks (C-RANs), unmanned aerial vehicles (UAVs) and reconfigurable intelligent surfaces (RISs). Examined from the practical perspective, the potential and challenges of MIMO in JCAS are summarized, and promising solutions are provided. Motivated by the great potential of the Internet of Things (IoT), we also specify JCAS in IoT scenarios and discuss the uniqueness of applying JCAS to IoT. In the end, open issues are outlined to envisage a ubiquitous, intelligent and secure JCAS network in the near future.

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