5G mmWave MIMO systems enable accurate estimation of the user position and mapping of the radio environment using a single snapshot when both the base station (BS) and user are equipped with large antenna arrays. However, massive arrays are initially expected only at the BS side, likely leaving users with one or very few antennas. In this paper, we propose a novel method for single-snapshot localization and mapping in the more challenging case of a user equipped with a single-antenna receiver. The joint maximum likelihood (ML) estimation problem is formulated and its solution formally derived. To avoid the burden of a full-dimensional search over the space of the unknown parameters, we present a novel practical approach that exploits the sp...
This chapter provides an overview of localization techniques in Multiple-Input Multiple-Output (MIMO...
Millimeter-wave (mmWave) massive multiple input multiple input (MIMO) has shown great potential in u...
In this paper, we present a robust multipath-based localization and mapping framework that exploits ...
The paper addresses the problem of determining the unknown position of a mobile station for a mmWave...
Cellular localization generally relies on timedifference-of-arrival (TDOA) measurements. In this pap...
The problem of position estimation of a mobile user equipped with a single antenna receiver using do...
MmWave multiple-input single-output (MISO) systems using a single-antenna receiver are regarded as a...
Accurate and ubiquitous localization is crucial for a variety of applications such as logistics, nav...
Large-scale MIMO systems are well known for their advantages in communications, but they also have t...
Massive antenna arrays can be used to meet the requirements of 5G, by exploiting different spatial s...
In this paper, we are interested in the joint estimate of user equipment (UE) location and orientati...
We propose a method for accurate estimation of the User Equipment (UE) position and antenna orientat...
Recently, millimeter-wave (mmWave) 5G localization has been shown to be to provide centimeter-level ...
In this paper, we propose optimal beamforming strategies for a millimeter wave (mmWave) system consi...
The fifth generation of mobile communications (5G) is expected to exploit the concept of location-aw...
This chapter provides an overview of localization techniques in Multiple-Input Multiple-Output (MIMO...
Millimeter-wave (mmWave) massive multiple input multiple input (MIMO) has shown great potential in u...
In this paper, we present a robust multipath-based localization and mapping framework that exploits ...
The paper addresses the problem of determining the unknown position of a mobile station for a mmWave...
Cellular localization generally relies on timedifference-of-arrival (TDOA) measurements. In this pap...
The problem of position estimation of a mobile user equipped with a single antenna receiver using do...
MmWave multiple-input single-output (MISO) systems using a single-antenna receiver are regarded as a...
Accurate and ubiquitous localization is crucial for a variety of applications such as logistics, nav...
Large-scale MIMO systems are well known for their advantages in communications, but they also have t...
Massive antenna arrays can be used to meet the requirements of 5G, by exploiting different spatial s...
In this paper, we are interested in the joint estimate of user equipment (UE) location and orientati...
We propose a method for accurate estimation of the User Equipment (UE) position and antenna orientat...
Recently, millimeter-wave (mmWave) 5G localization has been shown to be to provide centimeter-level ...
In this paper, we propose optimal beamforming strategies for a millimeter wave (mmWave) system consi...
The fifth generation of mobile communications (5G) is expected to exploit the concept of location-aw...
This chapter provides an overview of localization techniques in Multiple-Input Multiple-Output (MIMO...
Millimeter-wave (mmWave) massive multiple input multiple input (MIMO) has shown great potential in u...
In this paper, we present a robust multipath-based localization and mapping framework that exploits ...