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20172019
most citedDynamic Double Directional Propagation Channel Measurements at 28 GHz

5 citations · 6 across the 3 of their papers we have counts for

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7 papers · 1 filter

cs.IT2019

Enable Super-resolution Parameter Estimation for Mm-wave Channel Sounding

Rui Wang, C. Umit Bas, Zihang Cheng +14

This paper investigates the capability of millimeter-wave (mmWave) channel sounders with phased arrays to perform super-resolution parameter estimation, i.e., determine the paramet…

cs.IT2018

On channel sounding with switched arrays in fast time-varying channels

Rui Wang, Olivier Renaudin, C. Umit Bas +2

Time-division multiplexed (TDM) channel sounders, in which a single RF chain is connected sequentially via an electronic switch to different elements of an array, are widely used f…

cs.IT2017

28 GHz Microcell Measurement Campaign for Residential Environment

C. Umit Bas, Rui Wang, Seun Sangodoyin +5

This paper presents results from the (to our knowledge) first double-directionally resolved measurement campaign at mm-wave frequencies in a suburban microcell. The measurements ar…

cs.IT20175 cited

Dynamic Double Directional Propagation Channel Measurements at 28 GHz

C. Umit Bas, Rui Wang, Seun Sangodoyin +5

This paper presents results from the (to our knowledge) first dynamic double-directionally resolved measurement campaign at mm-wave frequencies for an outdoor microcellular scenari…

cs.IT2017

Outdoor to Indoor Penetration Loss at 28 GHz for Fixed Wireless Access

C. Umit Bas, Rui Wang, Thomas Choi +5

This paper present the results from a 28 GHz channel sounding campaign performed to investigate the effects of outdoor to indoor penetration on the wireless propagation channel cha…

cs.IT20171 cited

Stationarity Region of Mm-Wave Channel Based on Outdoor Microcellular Measurements at 28 GHz

R. Wang, C. U. Bas, S. Sangodoyin +4

The stationarity region, i.e., the area in which the statistics of a propagation channel remain constant, is an important measure of the propagation channel, and essential for effi…