IEEEThis work investigates the localization process in milimeter-wave ($mm$-Wave) multiple-input single-output (MISO) OFDM systems considering hardware impairments (HWIs) at both the base station (BS) and the mobile station (MS). The localization is performed on MS board by estimating the downlink channel parameters using a maximum likelihood (ML) estimator, and then transforming them to the localization parameters. Besides, the Fisher information matrix (FIM) is utilized to assess the accuracy of the estimation processes. The limits of the localization is calculated in terms of the position error bound (PEB). The obtained results of the computer simulations show the destructive impacts of the HWIs on the localization process with respect t...
In this paper, we target single-anchor localization schemes for millimeter wave (MMW) systems. The s...
In this paper, we propose optimal beamforming strategies for a millimeter wave (mmWave) system consi...
International audienceIn this paper, we propose optimal beamforming strategies for a millimeter wave...
IEEEThis work investigates the localization process in milimeter-wave ($mm$-Wave) multiple-input sin...
Millimeter-wave (mm-wave) multiple-input single-output (MISO) systems are expected to be extremely a...
© 2020 IEEE.This work investigates the theoretical bounds of the joint localization and synchronizat...
Localization and location aware systems are expected to be counted as one of the main services of 5...
Millimeter-wave (mmWave) massive multiple input multiple input (MIMO) has shown great potential in u...
In this research, we propose to estimate the location of mobile users by using the maximum likelihoo...
Accurate and ubiquitous localization is crucial for a variety of applications such as logistics, nav...
Millimeter wave (mmWave) has been identified to be a promising technology in the beyond 5G wireless ...
Abstract Wireless communication networks are increasingly based on the ubiquitous multiple-input mul...
The paper addresses the problem of determining the unknown position of a mobile station for a mmWave...
International audienceIn this paper, we propose various localization error optimal beamforming strat...
In this paper, we target single-anchor localization schemes for millimeter wave (MMW) systems. The s...
In this paper, we propose optimal beamforming strategies for a millimeter wave (mmWave) system consi...
International audienceIn this paper, we propose optimal beamforming strategies for a millimeter wave...
IEEEThis work investigates the localization process in milimeter-wave ($mm$-Wave) multiple-input sin...
Millimeter-wave (mm-wave) multiple-input single-output (MISO) systems are expected to be extremely a...
© 2020 IEEE.This work investigates the theoretical bounds of the joint localization and synchronizat...
Localization and location aware systems are expected to be counted as one of the main services of 5...
Millimeter-wave (mmWave) massive multiple input multiple input (MIMO) has shown great potential in u...
In this research, we propose to estimate the location of mobile users by using the maximum likelihoo...
Accurate and ubiquitous localization is crucial for a variety of applications such as logistics, nav...
Millimeter wave (mmWave) has been identified to be a promising technology in the beyond 5G wireless ...
Abstract Wireless communication networks are increasingly based on the ubiquitous multiple-input mul...
The paper addresses the problem of determining the unknown position of a mobile station for a mmWave...
International audienceIn this paper, we propose various localization error optimal beamforming strat...
In this paper, we target single-anchor localization schemes for millimeter wave (MMW) systems. The s...
In this paper, we propose optimal beamforming strategies for a millimeter wave (mmWave) system consi...
International audienceIn this paper, we propose optimal beamforming strategies for a millimeter wave...