Mobility may degrade the performance of next-generation vehicular networks operating at the millimeter-wave spectrum: frequent loss of alignment and blockages require repeated beam training and handover, thus incurring huge overhead. In this paper, an adaptive and joint design of beam training, data transmission and handover is proposed, that exploits the mobility process of mobile users and the dynamics of blockages to optimally trade-off throughput and power consumption. At each time slot, the serving base station decides to perform either beam training, data communication, or handover when blockage is detected. The problem is cast as a partially observable Markov decision process, and solved via an approximate dynamic programming algorit...
Millimeter-wave (MmWave) vehicular communication enables massive sensor data sharing and various eme...
Abstract The sensitivity of the millimeter-wave (mmWave) radio channel to blockages is a fundamenta...
Millimeter wave (mmWave) wireless technologies are expected to become key enablers of multi-gigabit ...
Mobility may degrade the performance of next-generation vehicular networks operating at the millimet...
Future vehicular communication networks call for new solutions to support their capacity demands, by...
Millimeter-wave communications use narrow beams to overcome the enormous signal attenuation. Such na...
In order to cope with the severe path loss, millimeter-wave (mm-wave) systems exploit highly directi...
In intelligent transportation systems (ITS), vehicles are expected to feature with advanced applicat...
Directional communication is helpful to improve the performance of millimeter Wave (mmWave) links. H...
Massive multiple-input multiple-output (MMIMO) is a key technology for 5G mobile communication syste...
In the 5G network, dense deployment of small cells and utilisation of millimetre wave (mmWave) band ...
Mobile devices operating at millimeter wave (mmWave) frequencies are expected to comprise an integra...
The new frontier in cellular networks is harnessing the enormous spectrum available at millimeter wa...
Mobile communication at millimeter-waves (mmWaves) is affected by the rapid and random variations of...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
Millimeter-wave (MmWave) vehicular communication enables massive sensor data sharing and various eme...
Abstract The sensitivity of the millimeter-wave (mmWave) radio channel to blockages is a fundamenta...
Millimeter wave (mmWave) wireless technologies are expected to become key enablers of multi-gigabit ...
Mobility may degrade the performance of next-generation vehicular networks operating at the millimet...
Future vehicular communication networks call for new solutions to support their capacity demands, by...
Millimeter-wave communications use narrow beams to overcome the enormous signal attenuation. Such na...
In order to cope with the severe path loss, millimeter-wave (mm-wave) systems exploit highly directi...
In intelligent transportation systems (ITS), vehicles are expected to feature with advanced applicat...
Directional communication is helpful to improve the performance of millimeter Wave (mmWave) links. H...
Massive multiple-input multiple-output (MMIMO) is a key technology for 5G mobile communication syste...
In the 5G network, dense deployment of small cells and utilisation of millimetre wave (mmWave) band ...
Mobile devices operating at millimeter wave (mmWave) frequencies are expected to comprise an integra...
The new frontier in cellular networks is harnessing the enormous spectrum available at millimeter wa...
Mobile communication at millimeter-waves (mmWaves) is affected by the rapid and random variations of...
Thesis (Master's)--University of Washington, 2018Millimeter wave (mmWave) technology has emerged as ...
Millimeter-wave (MmWave) vehicular communication enables massive sensor data sharing and various eme...
Abstract The sensitivity of the millimeter-wave (mmWave) radio channel to blockages is a fundamenta...
Millimeter wave (mmWave) wireless technologies are expected to become key enablers of multi-gigabit ...