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Sub-Terahertz Spatial Statistical MIMO Channel Model for Urban Microcells at 142 GHz
Shihao Ju, Theodore S. Rappaport
Sixth generation (6G) cellular systems are expected to extend the operational range to sub-Terahertz (THz) frequencies between 100 and 300 GHz due to the broad unexploited spectrum…
Millimeter Wave and Terahertz Urban Microcell Propagation Measurements and Models
Yunchou Xing, Theodore S. Rappaport
Comparisons of outdoor Urban Microcell (UMi) large-scale path loss models, root mean square (RMS) delay spreads (DS), angular spreads (AS), and the number of spatial beams for exte…
A Wideband Sliding Correlation Channel Sounder in 65 nm CMOS: Evaluation Board Performance
Dipankar Shakya, Ting Wu, Michael E. Knox +1
Emerging applications such as wireless sensing, position location, robotics, and many more are driven by the ultra-wide bandwidths available at millimeter-wave (mmWave) and Teraher…
Millimeter Wave and Sub-Terahertz Spatial Statistical Channel Model for an Indoor Office Building
Shihao Ju, Yunchou Xing, Ojas Kanhere +1
Millimeter-wave (mmWave) and sub-Terahertz (THz) frequencies are expected to play a vital role in 6G wireless systems and beyond due to the vast available bandwidth of many tens of…
140 GHz Urban Microcell Propagation Measurements for Spatial Consistency Modeling
Shihao Ju, Theodore S. Rappaport
Sub-Terahertz frequencies (frequencies above 100 GHz) have the potential to satisfy the unprecedented demand on data rate on the order of hundreds of Gbps for sixth-generation (6G)…
Outdoor sub-THz Position Location and Tracking using Field Measurements at 142 GHz
Ojas Kanhere, Theodore S. Rappaport
Future sub-THz cellular deployments may be utilized to complement the coverage of the global positioning system (GPS) and provide centimeter-level accuracy. In this work, we use me…