Experimental Performances of mmWave RIS-assisted 5G-Advanced Wireless Deployments in Urban Environments

Fuente: arXiv
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Hauptverfasser: Coskun, Ahmet Faruk, Kocaoglu, Alper Tolga, Arslan, Emre, Yigit, Zehra, Kesir, Samed, Kaplan, Batuhan, Dou, Jianwu, Cui, Yijun
Format: Preprint
Veröffentlicht: 2025
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author Coskun, Ahmet Faruk
Kocaoglu, Alper Tolga
Arslan, Emre
Yigit, Zehra
Kesir, Samed
Kaplan, Batuhan
Dou, Jianwu
Cui, Yijun
author_facet Coskun, Ahmet Faruk
Kocaoglu, Alper Tolga
Arslan, Emre
Yigit, Zehra
Kesir, Samed
Kaplan, Batuhan
Dou, Jianwu
Cui, Yijun
contents Reconfigurable intelligent surface (RIS) has emerged as a groundbreaking technology for 6G wireless communication networks, enabling cost-effective control over wireless propagation environment. By dynamically manipulating its codebook so as to deflect the direction of the reflected electromagnetic wave, RIS can achieve enhanced signal quality, extended coverage, and interference mitigation. This study presents experimental performance of ZTE Dynamic 2.0 RIS products through a series of real-world tests conducted on Turkcell's millimeter-wave (mmWave) testbed. The evaluation involves network coverage extension in urban areas, multi-user efficiency, and the integration of virtual reality technology to support immersive applications in next-generation 6G networks. Through a comprehensive measurement-based analysis, the performance of the RIS product is demonstrated, highlighting its potential to address critical challenges in mmWave communications and to enable advanced 6G use cases.
format Preprint
id arxiv_https___arxiv_org_abs_2506_06525
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Experimental Performances of mmWave RIS-assisted 5G-Advanced Wireless Deployments in Urban Environments
Coskun, Ahmet Faruk
Kocaoglu, Alper Tolga
Arslan, Emre
Yigit, Zehra
Kesir, Samed
Kaplan, Batuhan
Dou, Jianwu
Cui, Yijun
Signal Processing
Systems and Control
Reconfigurable intelligent surface (RIS) has emerged as a groundbreaking technology for 6G wireless communication networks, enabling cost-effective control over wireless propagation environment. By dynamically manipulating its codebook so as to deflect the direction of the reflected electromagnetic wave, RIS can achieve enhanced signal quality, extended coverage, and interference mitigation. This study presents experimental performance of ZTE Dynamic 2.0 RIS products through a series of real-world tests conducted on Turkcell's millimeter-wave (mmWave) testbed. The evaluation involves network coverage extension in urban areas, multi-user efficiency, and the integration of virtual reality technology to support immersive applications in next-generation 6G networks. Through a comprehensive measurement-based analysis, the performance of the RIS product is demonstrated, highlighting its potential to address critical challenges in mmWave communications and to enable advanced 6G use cases.
title Experimental Performances of mmWave RIS-assisted 5G-Advanced Wireless Deployments in Urban Environments
topic Signal Processing
Systems and Control
url https://arxiv.org/abs/2506.06525