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Assessment of User Mobility's Influence on System Loss in Several Body-to-Body Scenarios.

, , , , and . PIMRC, page 905-910. IEEE, (2021)

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Bandwidth Dependence of the Propagation Channel in Circular Metallic BAN Environments., , , and . IEEE Access, (2023)Mobility's Influence on System Loss in Off-Body BAN Scenarios., , , , and . EuCNC, page 136-141. IEEE, (2022)Fading Modeling in Maritime Container Terminal Environments., , , , and . IEEE Trans. Vehicular Technology, 67 (10): 9087-9096 (2018)System Loss Model for Body-to-Body Networks in Indoor and Outdoor Environments., , , , and . PIMRC, page 1-6. IEEE, (2023)Influence of User Mobility and Antenna Placement on System Loss in B2B Networks., , , and . IEEE Access, (2022)System Loss Model for Body Area Networks in Room Scenarios., , , , and . PIMRC, page 1-6. IEEE, (2023)Depolarisation Model for a BAN Indoor Scenario., , , , , and . EuCNC/6G Summit, page 186-191. IEEE, (2023)Assessment of User Mobility's Influence on System Loss in Several Body-to-Body Scenarios., , , , and . PIMRC, page 905-910. IEEE, (2021)A Cross-Polarisation Discrimination Analysis of Off-Body Channels in Passenger Ferryboat Environments., , , , , and . IEEE Access, (2022)A Wideband Channel Model for Body Area Networks in Circular Metallic Indoor Environments., , , and . IEEE Access, (2021)