Title :
Ray-Tracing-Based mm-Wave Beamforming Assessment
Author :
Degli-Esposti, Vittorio ; Fuschini, Franco ; Vitucci, Enrico M. ; Barbiroli, Marina ; Zoli, Marco ; Tian, L. ; Yin, X. ; Dupleich, Diego Andres ; Muller, Rudolf ; Schneider, C. ; Thoma, Reiner S.
Author_Institution :
Ilmenau Univ. of Technol., Ilmenau, Germany
Abstract :
The use of large-size antenna arrays to implement pencil-beam forming techniques is becoming a key asset to cope with the very high throughput density requirements and high path-loss of future millimeter-wave (mm-wave) gigabit-wireless applications. Suboptimal beamforming (BF) strategies based on search over discrete set of beams (steering vectors) are proposed and implemented in present standards and applications. The potential of fully adaptive advanced BF strategies that will become possible in the future, thanks to the availability of accurate localization and powerful distributed computing, is evaluated in this paper through system simulation. After validation and calibration against mm-wave directional indoor channel measurements, a 3-D ray tracing model is used as a propagation-prediction engine to evaluate performance in a number of simple, reference cases. Ray tracing itself, however, is proposed and evaluated as a real-time prediction tool to assist future BF techniques.
Keywords :
array signal processing; millimetre wave antenna arrays; ray tracing; 3D ray tracing model; distributed computing; large-size antenna arrays; mm-wave directional indoor channel measurements; pencil-beam forming techniques; propagation-prediction engine; ray-tracing-based mm-wave beamforming assessment; suboptimal beamforming strategies; Antenna arrays; Array signal processing; Beam steering; Computational modeling; Millimeter wave technology; Performance evaluation; Predictive models; Ray tracing; Beamforming, Ray Tracing; Channel Measurements; MIMO; Millimeter-wave propagation; beamforming; channel measurements; millimeter-wave propagation; ray tracing;
Journal_Title :
Access, IEEE
DOI :
10.1109/ACCESS.2014.2365991