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Outdoor to Indoor Path Loss Measurement at 1.8GHz, 3.5GHz, 6.5GHz, and 26GHz Commercial Frequency Bands.

, , , , and . WPMC, page 1-5. IEEE, (2021)

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Measurement Based Study of Commercial 5G Frequencies in Urban Macro Cellular Environment., , , , , and . WiMob, page 175-180. IEEE, (2021)Using Existing Base Station Sites for 5G Millimeter-Wave Fixed Wireless Access: Antenna Height and Coverage Analysis., , , and . WCNC, page 1-6. IEEE, (2024)Millimeter-Wave Radio Link Analysis for 5G FWA by Combining Measurements and Geospatial Data., , , , and . FNWF, page 433-438. IEEE, (2022)Outdoor to Indoor Path Loss Measurement at 1.8GHz, 3.5GHz, 6.5GHz, and 26GHz Commercial Frequency Bands., , , , and . WPMC, page 1-5. IEEE, (2021)A Multichannel Self-Interference Cancellation Prototyping System., , and . 5G World Forum, page 427-432. IEEE, (2019)An Experiment on 5G Open-RAN Platform with Sub-THz Backhauling., , , , , , , , , and 14 other author(s). WCNC, page 1-6. IEEE, (2024)Rural Macrocell Path Loss Measurements for 5G Fixed Wireless Access at 26 GHz., , , , , and . 5GWF, page 328-333. IEEE, (2021)Measurements at 5G Commercial 26 GHz Frequency with Above and on Rooftop Level Antenna Masts in Urban Environment., , , , , and . VTC Spring, page 1-5. IEEE, (2021)Implementation of Low-Cost Multi-Antenna AmBC Receivers., , , , , , and . VTC2023-Spring, page 1-6. IEEE, (2023)Qualifying 5G SA for L4 Automated Vehicles in a Multi-PLMN Experimental Testbed., , , , , , , , , and 8 other author(s). VTC Spring, page 1-3. IEEE, (2021)