面向数据驱动网络的RIS-IoE:新思路、新趋势和初步解决方案

Biting Zhuo, Juping Gu, Wei Duan, Guoan Zhang, Miaowen Wen, F. Gao
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引用次数: 1

摘要

可重构智能表面(RIS)由于其固有的被动反射和智能相移调整,为未来第六代(6G)无线网络提供了智能和可编程的通信环境。为了支持万物互联(IoE)的超数据过程,本文详细研究了新的思路,例如人工智能(AI)驱动的RIS及其相应的设计、部署和优化。考虑到RIS的应用和实现,还研究了新兴技术的集成,以在可实现容量、功耗和传输安全性方面提供显着的性能增强,包括物理层安全性(PLS)、同时无线信息和电力传输(SWIPT)、非正交多址(NOMA)和无人驾驶人工飞行器(UAV)。然后,为了解决信道估计的挑战,通过一个简单的案例研究全面研究了RIS-NOMA网络,其中可以通过提出的解码原则来解决这个棘手的问题。总结了速率分割多址(RSMA)、海量多输入多输出(mMIMO)和毫米波(mmWave)技术在RIS-IoE网络中的未来研究趋势和有待解决的问题,为后续研究提供建设性方向。
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RIS-IoE for Data-Driven Networks: New Mentalities, Trends and Preliminary Solutions
Reconfigurable intelligent surface (RIS) enables an intelligent and programmable communication environment for future sixth-generation (6G) wireless networks, owing to its native passive reflecting and smart phase shifts adjustment. To support the ultra data process for the Internet of Everything (IoE), in this article, new mentalities are investigated in details, such as artificial intelligence (AI) driven RIS, their corresponding designs, deployments, and optimizations. Considering applications and implementations with RIS, the integrating of emerging technologies is also studied to provide a significant performance enhancement in terms of the achievable capacity, power consumption and transmitting security, including physical layer security (PLS), simultaneous wireless information and power transfer (SWIPT), non-orthogonal multiple access (NOMA) and unmanned artificial vehicle (UAV). Then, to address the challenge of channel estimations, RIS-NOMA networks are comprehensively investigated with a simple case study, where the tough issue can be tackled by means of proposed decoding principles. Furthermore, future research trends and open issues of RIS-IoE networks are summarized associated with rate splitting multiple access (RSMA), massive multiple-input multiple-output (mMIMO), and millimeter wave (mmWave), providing constructive directions for the subsequent study.
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