Far-Field vs. Near-Field Propagation Channels: Key Differences and Impact on 6G XL-MIMO Performance Evaluation

Fuente: arXiv
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Autori principali: Ding, Zihang, Zhang, Jianhua, You, Changsheng, Tang, Pan, Xing, Hongbo, Yuan, Zhiqiang, Meng, Jie, Liu, Guangyi
Natura: Preprint
Pubblicazione: 2025
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author Ding, Zihang
Zhang, Jianhua
You, Changsheng
Tang, Pan
Xing, Hongbo
Yuan, Zhiqiang
Meng, Jie
Liu, Guangyi
author_facet Ding, Zihang
Zhang, Jianhua
You, Changsheng
Tang, Pan
Xing, Hongbo
Yuan, Zhiqiang
Meng, Jie
Liu, Guangyi
contents Extremely large-scale multiple-input multiple-output (XL-MIMO) is regarded as a promising technology for next-generation communication systems. However, this will expand the near-field (NF) range, rendering more users more likely to be located in the NF region. In this paper, we aim to answer two questions: What are the new characteristics of the NF channel? Is it necessary to develop new transciver techniques to maintain system performance within the NF region? To this end, we first review current NF channel models and analyze the differences between the existing 3GPP TR 38.901 channel model and the NF channel model, including the spherical wavefront and spatially non-stationarity. Then, we provide examples on how these differences affect the XL-MIMO system performance in terms of beamforming gain and achievable rate. Simulation results demonstrate that, when using far-field (FF) technique under the NF channel, the maximum normalized beam gain loss is less than 3 dB for most users in the NF region defined by Rayleigh distance. Moreover, the achievable rate loss of beam training is less than 3% compared to that realized by NF technique. Finally, we demonstrate the necessity of employing NF transceiver techniques based on simulation results.
format Preprint
id arxiv_https___arxiv_org_abs_2506_23495
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Far-Field vs. Near-Field Propagation Channels: Key Differences and Impact on 6G XL-MIMO Performance Evaluation
Ding, Zihang
Zhang, Jianhua
You, Changsheng
Tang, Pan
Xing, Hongbo
Yuan, Zhiqiang
Meng, Jie
Liu, Guangyi
Signal Processing
Extremely large-scale multiple-input multiple-output (XL-MIMO) is regarded as a promising technology for next-generation communication systems. However, this will expand the near-field (NF) range, rendering more users more likely to be located in the NF region. In this paper, we aim to answer two questions: What are the new characteristics of the NF channel? Is it necessary to develop new transciver techniques to maintain system performance within the NF region? To this end, we first review current NF channel models and analyze the differences between the existing 3GPP TR 38.901 channel model and the NF channel model, including the spherical wavefront and spatially non-stationarity. Then, we provide examples on how these differences affect the XL-MIMO system performance in terms of beamforming gain and achievable rate. Simulation results demonstrate that, when using far-field (FF) technique under the NF channel, the maximum normalized beam gain loss is less than 3 dB for most users in the NF region defined by Rayleigh distance. Moreover, the achievable rate loss of beam training is less than 3% compared to that realized by NF technique. Finally, we demonstrate the necessity of employing NF transceiver techniques based on simulation results.
title Far-Field vs. Near-Field Propagation Channels: Key Differences and Impact on 6G XL-MIMO Performance Evaluation
topic Signal Processing
url https://arxiv.org/abs/2506.23495