paper-with-me

홈 › Papers

Cramér-Rao Bounds for Holographic Positioning

2021-11-03 · Antonio A. D'Amico, Andrea de Jesus Torres, Luca Sanguinetti, Moe Win

Multiple antennas arrays play a key role in wireless networks for communications but also for localization and sensing applications. The use of large antenna arrays at high carrier frequencies (in the mmWave range) pushes towards a propagation regime in which the wavefront is no longer plane but spherical. This allows to infer the position and orientation of a transmitting source from the received signal without the need of using multiple anchor nodes, located in known positions. To understand the fundamental limits of large antenna arrays for localization, this paper combines wave propagation theory with estimation theory, and computes the Cram\'er-Rao Bound (CRB) for the estimation of the source position on the basis of the three Cartesian components of the electric field, observed over a rectangular surface area. The problem is referred to as holographic positioning and is formulated by taking into account the radiation angular pattern of the transmitting source, which is typically ignored in standard signal processing models. We assume that the source is a Hertzian dipole, and address the holographic positioning problem in both cases, that is, with and without a priori knowledge of its orientation. To simplify the analysis and gain further insights, we also consider the case in which the dipole is located on the line perpendicular to the surface center. Numerical and asymptotic results are given to quantify the CRBs, and to quantify the effect of various system parameters on the ultimate estimation accuracy. It turns out that surfaces of practical size may guarantee a centimeter-level accuracy in the mmWave bands.

📄 PDF Abstract BibTeX arXiv:2111.02229

Code (0)

등록된 구현이 없습니다.

Tasks

Position

Similar Papers 제목 키워드 기반

Holographic Joint Communications and Sensing With Cramer-Rao Bounds

2025-02-21 · Chandan Kumar Sheemar, Wali Ullah Khan, George Alexandropoulos, Jorge Querol 외

Joint Communication and Sensing (JCAS) technology facilitates the seamless integration of communication and sensing functionalities within a unified framework, enhancing spectral efficiency, reducing hardware complexity,…

Fundamental Performance Bounds for Carrier Phase Positioning in Cellular Networks

2023-06-21 · Henk Wymeersch, Rouhollah Amiri, Gonzalo Seco-Granados

The carrier phase of cellular signals can be utilized for highly accurate positioning, with the potential for orders-of-magnitude performance improvements compared to standard time-difference-of-arrival positioning. Due …

OFDM-Based Positioning with Unknown Data Payloads: Bounds and Applications to LEO PNT

2024-07-26 · Andrew M. Graff, Todd E. Humphreys

This paper presents bounds, estimators, and signal design strategies for exploiting both known pilot resources and unknown data payload resources in time-of-arrival (TOA)-based positioning systems with orthogonal frequen…

Posterior Cramér-Rao Bounds on Localization and Mapping Errors in Distributed MIMO SLAM

2025-06-24 · Benjamin J. B. Deutschmann, Xuhong LI, Florian Meyer, Erik Leitinger

Radio-frequency simultaneous localization and mapping (RF-SLAM) methods jointly infer the position of mobile transmitters and receivers in wireless networks, together with a geometric map of the propagation environment. …

PositionSimultaneous Localization and Mapping

Multi-band Reconfigurable Holographic Surface Based ISAC Systems: Design and Optimization

2023-03-28 · Jingzhi Hu, Zhe Chen, Jun Luo

Metamaterial-based reconfigurable holographic surfaces (RHSs) have been proposed as novel cost-efficient antenna arrays, which are promising for improving the positioning and communication performance of integrated sensi…

ISAC