可重构智能表面辅助免授权大规模访问

Xingyu Zhou;Keke Ying;Shicong Liu;Malong Ke;Zhen Gao;Mohamed-Slim Alouini
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引用次数: 2

摘要

大规模机器类型通信(mMTC)被设想为第五代(5G)无线通信的关键场景之一,其中爆炸性新兴的物联网(IoT)应用引发了对低延迟和高可靠性服务的需求。为此,无授权随机访问模式作为一种简化连接过程和显著降低访问延迟的有希望的实现方式被提出。在本文中,我们建议利用新兴的可重构智能表面(RIS)在毫米波(mmWave)频率下进行免授权的大规模访问,以进一步提高访问可靠性。通过附加独立可控的相移,重新配置和折射入射电磁波的传播,部署的RISs可以提供额外的分集增益并改善接入信道条件。在此基础上,为了解决具有挑战性的主动设备检测(ADD)和信道估计(CE)问题,我们开发了一种联合addce (JADDCE)方法,该方法利用现有的具有期望最大化(EM)的近似消息传递(AMP)算法来提取流量行为和级联信道矩阵中的结构化公共稀疏性。最后,通过仿真验证了所提方案的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reconfigurable intelligent surface assisted grant-free massive access
Massive machine-type communications (mMTC) is envisioned to be one of the pivotal scenarios in the fifth-generation (5G) wireless communication, where the explosively emerging Internet-of-Things (IoT) applications have triggered the demand for services with low-latency and high-reliability. To this end, grant-free random access paradigm has been proposed as a promising enabler in simplifying the connection procedure and significantly reducing access latency. In this paper, we propose to leverage the burgeoning reconfigurable intelligent surface (RIS) for grant-free massive access working at millimeter-wave (mmWave) frequency to further boost access reliability. By attaching independently controllable phase shifts, reconfiguring, and refracting the propagation of incident electromagnetic waves, the deployed RISs could provide additional diversity gain and enhance the access channel conditions. On this basis, to address the challenging active device detection (ADD) and channel estimation (CE) problem, we develop a joint-ADDCE (JADDCE) method by resorting to the existing approximate message passing (AMP) algorithm with expectation maximization (EM) to extract the structured common sparsity in traffic behaviors and cascaded channel matrices. Finally, simulations are carried out to demonstrate the superiority of our proposed scheme.
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