Abstract
Extremely large-scale antenna array (ELAA) systems emerge as a promising technology in beyond 5G and 6G wireless networks to support the deployment of distributed architectures. This paper explores the use of ELAAs to enable joint localization, synchronization and mapping in sub-6 GHz uplink channels, capitalizing on the near-field effects of phase-coherent distributed arrays. We focus on a scenario where a single-antenna user equipment (UE) communicates with a network of access points (APs) distributed in an indoor environment, considering both specular reflections from walls and scattering from objects. The UE is assumed to be unsynchronized to the network, while the APs can be time- and phase-synchronized to each other. We formulate the problem of joint estimation of location, clock offset and phase offset of the UE, and the locations of scattering points (SPs) (i.e., mapping). Through comprehensive Fisher information analysis, we assess the impact of bandwidth, AP array size, wall reflections, SPs and phase synchronization on localization accuracy. Furthermore, we derive the maximum likelihood (ML) estimator for the joint localization, synchronization, and mapping problem, which optimally combines the information collected by all the distributed arrays. To overcome its intractable high dimensionality, we propose a novel three-stage algorithm that first estimates phase offset leveraging carrier phase information of line-of-sight (LoS) paths, then determines the UE location and clock offset via LoS paths and wall reflections, and finally locates SPs using a null-space transformation technique. Simulation results demonstrate the effectiveness of our approach in distributed architectures supported by radio stripes (RSs)—an innovative alternative for implementing ELAAs—while revealing the benefits of carrier phase exploitation and showcasing the interplay between delay and angular information under different bandwidth regimes.
| Original language | English |
|---|---|
| Article number | 10851402 |
| Pages (from-to) | 412-429 |
| Number of pages | 18 |
| Journal | IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing |
| Volume | 19 |
| Issue number | 2 |
| DOIs | |
| Publication status | Published - 23 Jan 2025 |
Keywords
- Synchronization
- Location awareness
- Phased arrays
- Bandwidth
- 6G mobile communication
- Reflection
- Uplink
- Maximum likelihood estimation
- Clocks
- Channel models
- phase synchronization
- radio stripes
- Extremely large-scale antenna arrays
- positioning
- carrier phase
- distributed architectures
ASJC Scopus subject areas
- Signal Processing
- Electrical and Electronic Engineering
Fields of Expertise
- Sonstiges
- Information, Communication & Computing
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Dive into the research topics of 'Joint Localization, Synchronization and Mapping via Phase-Coherent Distributed Arrays'. Together they form a unique fingerprint.Projects
- 1 Finished
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EU - REINDEER - REsilient INteractive applications through hyper Diversity in Energy Efficient RadioWeaves technology
Leitinger, E. (Attendee / Assistant), Wilding, T. (Attendee / Assistant), Witrisal, K. (Project manager on research unit) & Deutschmann, B. (Attendee / Assistant)
1/01/21 → 31/12/24
Project: Research project
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