We propose a method for accurate estimation of the User Equipment (UE) position and antenna orientation. For this, we exploit the sparsity of the mm-wave channel, and employ a compressive sensing approach with iterative refinement steps for accurate estimation of the channel parameters, including the departure and arrival angles as well as the time-of-arrival for each observed propagation path. Based on the estimated channel parameters, we formulate an iterative Gibbs sampler to obtain statistical descriptions for the unknown UE position and orientation along with the unknown scatterer positions, even in the absence of a Line-Of-Sight path.Peer reviewe
High-accuracy positioning based on angles from multiple base-stations (BSs) requires precise knowled...
International audienceMillimeter wave signals and large antenna arrays are considered enabling techn...
Abstract Millimeter wave signals and large antenna arrays are considered enabling technologies for ...
Abstract We propose a method for accurate estimation of the User Equipment (UE) position and antenna...
With the emergence of new 5G radio networks, high-accuracy positioning solutions are becoming extens...
With the emergence of new 5G radio networks, high-accuracy positioning solutions are becoming extens...
Abstract With the emergence of new 5G radio networks, high-accuracy positioning solutions are becom...
We propose a method for accurate estimation of the User Equipment (UE) position and antenna orientat...
Abstract Millimeter-wave (mm-wave) signals and large antenna arrays are considered enabling technolo...
Millimeter wave and massive MIMO are considered enabling technologies for future 5G networks. While ...
Millimeter wave signals and large antenna arrays are considered enabling technologies for future 5G ...
We consider the problem of estimating the 3D orientation of a user, using the downlink mmWave signal...
The fifth generation of mobile communications (5G) is expected to exploit the concept of location-aw...
Millimeter wave signals and large antenna arrays are considered enabling technologies for future 5G ...
In this paper, we are interested in the joint estimate of user equipment (UE) location and orientati...
High-accuracy positioning based on angles from multiple base-stations (BSs) requires precise knowled...
International audienceMillimeter wave signals and large antenna arrays are considered enabling techn...
Abstract Millimeter wave signals and large antenna arrays are considered enabling technologies for ...
Abstract We propose a method for accurate estimation of the User Equipment (UE) position and antenna...
With the emergence of new 5G radio networks, high-accuracy positioning solutions are becoming extens...
With the emergence of new 5G radio networks, high-accuracy positioning solutions are becoming extens...
Abstract With the emergence of new 5G radio networks, high-accuracy positioning solutions are becom...
We propose a method for accurate estimation of the User Equipment (UE) position and antenna orientat...
Abstract Millimeter-wave (mm-wave) signals and large antenna arrays are considered enabling technolo...
Millimeter wave and massive MIMO are considered enabling technologies for future 5G networks. While ...
Millimeter wave signals and large antenna arrays are considered enabling technologies for future 5G ...
We consider the problem of estimating the 3D orientation of a user, using the downlink mmWave signal...
The fifth generation of mobile communications (5G) is expected to exploit the concept of location-aw...
Millimeter wave signals and large antenna arrays are considered enabling technologies for future 5G ...
In this paper, we are interested in the joint estimate of user equipment (UE) location and orientati...
High-accuracy positioning based on angles from multiple base-stations (BSs) requires precise knowled...
International audienceMillimeter wave signals and large antenna arrays are considered enabling techn...
Abstract Millimeter wave signals and large antenna arrays are considered enabling technologies for ...