TY - GEN
T1 - Experimental Analysis of the Impact of Weather on Signal Strength in the CBRS Frequency Spectrum
AU - Dash, Biswajit Kumar
AU - Caezza, Joseph A.
AU - Malandra, Filippo
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Weather variations can significantly impact the performance of 5G and 6G networks. Although much research has been conducted on these impacts, there has been limited focus specifically on Citizens Broadband Radio Service (CBRS) networks, which operate at 3.5 GHz spectrum. Analyzing these effects is crucial for CBRS-based private networks, where reliability and high performance are critical. This paper explores how different weather parameters, such as temperature, relative humidity, absolute humidity, rainfall, and snowfall, affect the signal strength in the CBRS spectrum. Through an extensive experimental campaign within a CBRS-based private LTE network in Buffalo, NY, we collected signal strength data from 32 data collection points over 21 months. Using weather data from Oikolab, our data-driven analyses indicate that relative humidity is a more reliable predictor of signal strength fluctuations compared to temperature and absolute humidity. We also investigate how various types of precipitation affect signal strength, with rainfall causing immediate decreases and snowfall leading to more prolonged impacts. These insights are vital for enhancing understanding of the impact of weather on the CBRS spectrum, a topic not extensively covered in the existing literature. The datasets used in this study are publicly available at https://github.com/WN4SS/CBRSdata.
AB - Weather variations can significantly impact the performance of 5G and 6G networks. Although much research has been conducted on these impacts, there has been limited focus specifically on Citizens Broadband Radio Service (CBRS) networks, which operate at 3.5 GHz spectrum. Analyzing these effects is crucial for CBRS-based private networks, where reliability and high performance are critical. This paper explores how different weather parameters, such as temperature, relative humidity, absolute humidity, rainfall, and snowfall, affect the signal strength in the CBRS spectrum. Through an extensive experimental campaign within a CBRS-based private LTE network in Buffalo, NY, we collected signal strength data from 32 data collection points over 21 months. Using weather data from Oikolab, our data-driven analyses indicate that relative humidity is a more reliable predictor of signal strength fluctuations compared to temperature and absolute humidity. We also investigate how various types of precipitation affect signal strength, with rainfall causing immediate decreases and snowfall leading to more prolonged impacts. These insights are vital for enhancing understanding of the impact of weather on the CBRS spectrum, a topic not extensively covered in the existing literature. The datasets used in this study are publicly available at https://github.com/WN4SS/CBRSdata.
KW - 3.5 GHz
KW - Citizens Broadband Radio Service (CBRS)
KW - Private cellular networks
KW - Propagation modeling for 5G/6G
KW - Signal strength
KW - Weather impact
UR - https://www.scopus.com/pages/publications/105018050480
U2 - 10.1109/ICCWorkshops67674.2025.11162390
DO - 10.1109/ICCWorkshops67674.2025.11162390
M3 - Conference contribution
AN - SCOPUS:105018050480
T3 - 2025 IEEE International Conference on Communications Workshops, ICC Workshops 2025
SP - 1664
EP - 1669
BT - 2025 IEEE International Conference on Communications Workshops, ICC Workshops 2025
A2 - Valenti, Matthew
A2 - Reed, David
A2 - Torres, Melissa
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2025 IEEE International Conference on Communications Workshops, ICC Workshops 2025
Y2 - 8 June 2025 through 12 June 2025
ER -