Path Loss Results in an Indoor Corridor Scenario at the 26, 32 and 39 GHz Millimeter-Wave Bands
Domingo Pimienta‐del‐Valle, Luis Mendo, José Manuel Riera, Pedro García-del-Pino
Abstract
Domingo Pimienta‐del‐Valle, Luis Mendo, José Manuel Riera, Pedro García-del-Pino
Abstract
Indoor propagation scenarios have drawn high interest, with several reported results being available. Nevertheless, more campaigns are still needed. Universidad Politécnica de Madrid (UPM) has carried out several indoor propagation campaigns at the 26, 32 and 39 GHz millimeter-wave frequency bands in a corridor indoor scenario. In this paper, multi-frequency path loss propagation results are presented for both line-of-sight (LOS) and non-light-of-sight (NLOS) conditions. These results are modeled with the CIF and ABG fittings and compared with available millimeter-wave models. Also, CI and FI coefficients for NLOS conditions are provided.
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Indoor propagation scenarios have drawn high interest, with several reported results being available. Nevertheless, more campaigns are still needed. Universidad Politécnica de Madrid (UPM) has carried out several indoor propagation campaigns at the 26, 32 and 39 GHz millimeter-wave frequency bands in a corridor indoor scenario. In this paper, multi-frequency path loss propagation results are presented for both line-of-sight (LOS) and non-light-of-sight (NLOS) conditions. These results are modeled with the CIF and ABG fittings and compared with available millimeter-wave models. Also, CI and FI coefficients for NLOS conditions are provided.
Key concepts: Non-line-of-sight propagation, Extremely high frequency, Path loss, Millimeter, Line-of-sight, Radio spectrum, Computer science, Environmental science