IEEE Journal of Selected Topics in Signal Processing · 2016 · 353 citations · 38 references
Channel ModelingEngineering5G SystemSpherical Scanning 28Millimeter-wave Channel ModelingAntennaMillimeter WaveMmwave SpectrumChannel ModelWireless PropagationMillimeter Wave Technology
This paper presents 28 GHz wideband propagation channel characteristics for millimeter wave (mmWave) urban cellular communication systems. The mmWave spectrum is considered as a key-enabling feature of 5G cellular communication systems to provide an enormous capacity increment; however, mmWave channel models are lacking today. The paper compares measurements conducted with a spherical scanning 28 GHz channel sounder system in the urban street-canyon environments of Daejeon, Korea and NYU campus, Manhattan, with ray-tracing simulations made for the same areas. Since such scanning measurements are very costly and time-intensive, only a relatively small number of channel samples can be obtained. The measurements are thus used to quantify the accuracy of a ray-tracer; the ray-tracer is subsequently used to obtain a large number of channel samples to fill gaps in the measurements. A set of mmWave radio propagation parameters is presented based on both the measurement results and ray-tracing, and the corresponding channel models following the 3GPP spatial channel model (SCM) methodology are also described.
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Millimeter Wave Mobile Communications for 5G Cellular: It Will Work!
Theodore S. Rappaport, Shu Sun, Rimma Mayzus et al. · IEEE Access · 2013 · 7.3K citations · Full text
Theodore S. Rappaport, George R. MacCartney, Mathew K. Samimi et al. · IEEE Transactions on Communications · 2015 · 1.6K citations · Full text
Channel Modeling, Wireless Communications, Channel Models +12
Millimeter wave wireless communications
George R. MacCartney, Shu Sun, Theodore S. Rappaport et al. · 2016 · 1.3K citations · Full text
Channel Modeling, Wireless Communications, Rural Millimeter +10