可重构智能曲面在动力能量分析中的集成

S. Terranova, M. Richter, Neekar M Mohammed, G. Gradoni, G. Tanner
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引用次数: 1

摘要

可重构智能表面在下一代无线通信系统(5G及以上/ 6G)中提供显著性能改进的潜力最近得到了研究。对智能曲面进行编程,控制电磁传播,并通过调整单元元的局部反射相位获得所需的波前。准确预测ris辅助无线信道中的电磁传播是研究人员面临的重大挑战,对电信运营商合理分配无线电资源至关重要。我们建议使用欧拉射线追踪方法,即动态能量分析(DEA)作为覆盖规划工具,能够考虑可重构智能表面与周围环境之间的EM相互作用。讨论了使DEA适用于此目的的主要特征,并将介绍DEA代码中反射面集成的一些初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of Reconfigurable Intelligent Surfaces in Dynamical Energy Analysis
Reconfigurable intelligent surfaces have been recently investigated for their potentials to offer significant performance improvements in the next generation wireless telecommunication systems (5G and beyond / 6G). Intelligent surfaces are programmed to control the electromagnetic propagation and obtain the desired wavefront by tuning the local reflection phase of unit elements. Predicting the electromagnetic propagation in the RIS-assisted wireless channel accurately is a significant challenge for researchers and becomes crucial for Telecom operators to properly allocate the radio resources. We propose the use of an Eulerian ray-tracing method, the Dynamical Energy Analysis (DEA), as a coverage planning tool capable of account for the EM interaction between reconfigurable intelligent surfaces and the surrounding environment. The main characteristics that make DEA suitable for this purpose are discussed and some preliminary results of the reflective surface integration within the DEA code will be presented.
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