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20152022
most citedA Wideband Sliding Correlation Channel Sounder in 65 nm CMOS: Evaluation Board Performance

16 citations · 72 across the 31 of their papers we have counts for

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11 papers · 1 filter

eess.SP2022

Dense Urban Outdoor-Indoor Coverage from 3.5 to 28 GHz

Dipankar Shakya, Dmitry Chizhik, Jinfeng Du +2

In the US, people spend 87% of their time indoors and have an average of four connected devices per person (in 2020). As such, providing indoor coverage has always been a challenge…

eess.SP2022

Sub-Terahertz Channel Measurements and Characterization in a Factory Building

Shihao Ju, Yunchou Xing, Ojas Kanhere +1

Sub-Terahertz (THz) frequencies between 100 GHz and 300 GHz are being considered as a key enabler for the sixth-generation (6G) wireless communications due to the vast amounts of u…

eess.SP202116 cited

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…

eess.SP20202 cited

Directional Radio Propagation Path Loss Models for Millimeter-Wave Wireless Networks in the 28-, 60-, and 73-GHz Bands

Ahmed Iyanda Sulyman, Abdulmalik Alwarafy, George R. MacCartney +2

Fifth-generation (5G) cellular systems are likely to operate in the centimeter-wave (3-30 GHz) and millimeter-wave (30-300 GHz) frequency bands, where a vast amount of underutilize…

eess.SP2020

A Wideband Sliding Correlator based Channel Sounder in 65 nm CMOS: An Evaluation Board Design

Dipankar Shakya, Ting Wu, Theodore S. Rappaport

Wide swaths of bandwidth at millimeter-wave (mmWave) and Terahertz (THz) frequencies stimulate diverse applications in wireless sensing, imaging, position location, cloud computing…

eess.SP20204 cited

3-D Statistical Indoor Channel Model for Millimeter-Wave and Sub-Terahertz Bands

Shihao Ju, Yunchou Xing, Ojas Kanhere +1

Millimeter-wave (mmWave) and Terahertz (THz) will be used in the sixth-generation (6G) wireless systems, especially for indoor scenarios. This paper presents an indoor three-dimens…