Urban A2G measurements at FR1 and FR3 frequencies show the close-in path loss model outperforms 3GPP, NLoS increases path loss exponent and shadow fading, and higher frequencies reduce mean RMS-DS from 93.11 ns to 46.84 ns while raising mean Rician K-factor from 9.16 dB to 12.88 dB, with lognormal a
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Measurement-Based Characterization and Statistical Modeling of 6G Urban Low-Altitude A2G Channels across FR1 and FR3
Urban A2G measurements at FR1 and FR3 frequencies show the close-in path loss model outperforms 3GPP, NLoS increases path loss exponent and shadow fading, and higher frequencies reduce mean RMS-DS from 93.11 ns to 46.84 ns while raising mean Rician K-factor from 9.16 dB to 12.88 dB, with lognormal a