NCR vs. Passive/Active RIS: How Much NCR Amplification is Required to Beat RIS?

Fuente: arXiv
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Main Authors: Demir, Özlem Tuğfe, Topal, Ozan Alp, Cavdar, Cicek, Björnson, Emil
Format: Preprint
Published: 2026
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author Demir, Özlem Tuğfe
Topal, Ozan Alp
Cavdar, Cicek
Björnson, Emil
author_facet Demir, Özlem Tuğfe
Topal, Ozan Alp
Cavdar, Cicek
Björnson, Emil
contents This paper investigates the fundamental tradeoff between reconfigurable intelligent surfaces (RISs) and network-controlled repeaters (NCRs) in terms of achievable signal-to-noise ratio (SNR). Considering an uplink system with a multi-antenna base station (BS) and a single-antenna user equipment (UE), we derive closed-form SNR expressions for passive RIS-, active RIS-, and NCR-assisted communication under line-of-sight propagation between the BS-RIS/NCR and RIS/NCR-UE. Both narrowband and wideband transmissions are analyzed, with and without the presence of a direct BS--UE link. Our analysis reveals a key structural difference: while the SNR achieved with RISs grows unboundedly with the number of RIS elements, the SNR provided by an NCR is fundamentally limited by the UE--repeater channel due to noise amplification. Nevertheless, we show that NCRs can outperform both passive and active RISs when deployed close to the UE, provided that sufficient amplification is available. Numerical results based on realistic path loss models quantify the amplification levels required for NCRs to outperform RISs across different deployment geometries and system dimensions. These findings provide clear design guidelines for the practical integration of RISs and NCRs in future wireless networks.
format Preprint
id arxiv_https___arxiv_org_abs_2603_19999
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle NCR vs. Passive/Active RIS: How Much NCR Amplification is Required to Beat RIS?
Demir, Özlem Tuğfe
Topal, Ozan Alp
Cavdar, Cicek
Björnson, Emil
Signal Processing
Information Theory
This paper investigates the fundamental tradeoff between reconfigurable intelligent surfaces (RISs) and network-controlled repeaters (NCRs) in terms of achievable signal-to-noise ratio (SNR). Considering an uplink system with a multi-antenna base station (BS) and a single-antenna user equipment (UE), we derive closed-form SNR expressions for passive RIS-, active RIS-, and NCR-assisted communication under line-of-sight propagation between the BS-RIS/NCR and RIS/NCR-UE. Both narrowband and wideband transmissions are analyzed, with and without the presence of a direct BS--UE link. Our analysis reveals a key structural difference: while the SNR achieved with RISs grows unboundedly with the number of RIS elements, the SNR provided by an NCR is fundamentally limited by the UE--repeater channel due to noise amplification. Nevertheless, we show that NCRs can outperform both passive and active RISs when deployed close to the UE, provided that sufficient amplification is available. Numerical results based on realistic path loss models quantify the amplification levels required for NCRs to outperform RISs across different deployment geometries and system dimensions. These findings provide clear design guidelines for the practical integration of RISs and NCRs in future wireless networks.
title NCR vs. Passive/Active RIS: How Much NCR Amplification is Required to Beat RIS?
topic Signal Processing
Information Theory
url https://arxiv.org/abs/2603.19999