Huge overhead of beam training imposes a significant challenge in millimeter-wave (mmWave) wireless communications. To address this issue, in this paper, we propose a wide beam based training approach to calibrate the narrow beamdirection according to the channel power leakage. To handle the complex nonlinear properties of the channel power leakage, deep learning is utilized to predict the optimal narrow beam directly. Specifically, three deep learning assisted calibrated beam training schemes are proposed. The first scheme adopts convolution neural network to implement the prediction based on the instantaneous received signals of wide beam training. We also perform theadditional narrow beam training based on the predicted probabilities for...
Future wireless systems will range from sub-6 GHz to above 60 GHz so that large bandwidths could be ...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
In this paper, motivated by the inter-base station (BS) channel dependence due to the shared wireles...
Millimeter wave communications, equipped with large-scale antenna arrays, are able to provide Gbps d...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
Millimeter-wave communications use narrow beams to overcome the enormous signal attenuation. Such na...
Millimeter-wave communications use narrow beams to overcome the enormous signal attenuation. Such na...
In this paper, we propose a deep learning-based beam tracking method for millimeter-wave (mmWave)com...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
We consider a machine learning approach to perform best beam prediction in Non-Standalone Millimeter...
Future wireless systems will range from sub-6 GHz to above 60 GHz so that large bandwidths could be ...
Future wireless systems will range from sub-6 GHz to above 60 GHz so that large bandwidths could be ...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
In this paper, motivated by the inter-base station (BS) channel dependence due to the shared wireles...
Millimeter wave communications, equipped with large-scale antenna arrays, are able to provide Gbps d...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
Millimeter-wave communications use narrow beams to overcome the enormous signal attenuation. Such na...
Millimeter-wave communications use narrow beams to overcome the enormous signal attenuation. Such na...
In this paper, we propose a deep learning-based beam tracking method for millimeter-wave (mmWave)com...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
mmWave communication requires accurate and continuous beam steering to overcome the severe propagati...
We consider a machine learning approach to perform best beam prediction in Non-Standalone Millimeter...
Future wireless systems will range from sub-6 GHz to above 60 GHz so that large bandwidths could be ...
Future wireless systems will range from sub-6 GHz to above 60 GHz so that large bandwidths could be ...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...