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System Performance Insights into Design of RIS-assisted Smart Radio Environments for 6G

机译:系统性能见解RIS辅助智能无线电环境设计6G

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In state-of-the-art wireless networks, the radio environment is beyond the control of the operators which leads to several issues. For example, signal attenuation limits radio connectivity, multi-path propagation results in fading phenomena and reflections/refractions from large objects are the main sources of uncontrollable interference. To overcome these issues, a new technology referred to as reconfigurable intelligent surfaces (RISs) has been brought to light. RISs, whose interactions with the electromagnetic waves are reconfigurable, are at the heart of the smart radio environments for beyond 5G (or 6G) wireless systems. Research on design of smart radio environments is still in infancy. To this end, this paper provides performance insights for design of RIS-assisted smart radio environments. By extending a recent system-level simulator and through extensive simulations, it investigates the impact of positioning/placement of RISs, the number of reflecting elements and the tilt/rotation of RISs in both single and multi-RIS environments. Results reveal that these aspects are crucial to achieving capacity and reliability enhancements in smart radio environments.
机译:在最先进的无线网络中,无线电环境超出了操作员的控制,这导致了几个问题。例如,信号衰减限制无线连接,多路径传播导致衰落现象和来自大目的的反射/折射是无法控制干扰的主要源。为了克服这些问题,已经揭示了一种新的技术被称为可重构智能表面(RISS)。 RISS,其与电磁波的相互作用是可重新配置的,位于超出5G(或6G)无线系统的智能无线电环境的核心。智能无线电环境设计的研究仍处于初期阶段。为此,本文为RIS辅助无线电环境设计提供了性能见解。通过延长最近的系统级模拟器和广泛的模拟,它调查了riss的定位/放置的影响,反射元件的数量和riss的倾斜/旋转在单个和多ris环境中。结果表明,这些方面对于实现智能无线电环境中的能力和可靠性增强至关重要。

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