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Task-guided line-of-sight power-ratio calibration for bias-limited visible light positioning.

Created on 02 Sep 2026

Authors

Pablo Palacios Játiva, Iván Sánchez Salazar, Ismael Soto, María Camila Reyes

Published in

Optics letters. Volume 51. Issue 17. Pages 4876-4879. Sep 01, 2026.

Abstract

Channel impulse response (CIR)-assisted visible light positioning (VLP) improves indoor ranging by separating the line-of-sight (LoS) contribution from multipath-contaminated observations. Practical CIR processing, however, does not provide an ideal LoS measurement: delay-bin aggregation, path-support errors, tap-estimation noise, and residual non-line-of-sight leakage introduce a structured bias in the estimated LoS power ratio (LPR). This Letter formulates bias-limited VLP as a task-guided measurement-calibration problem. Instead of replacing the localization backend with coordinate regression, the proposed task-guided LoS power-ratio calibration (T-LPRCal) framework learns a bounded correction of the CIR-derived LPR before range estimation. A first-order propagation model relates LPR bias to range and position errors, while a compact recurrent classifier selects the correction through position-supervised labels generated offline by the physical localization pipeline. Simulations in a representative indoor optical channel show that T-LPRCal reduces the bias floor in the high signal-to-noise ratio (SNR) regime, improves median and 90th-percentile position errors, and preserves explicit Lambertian ranging and a least-squares (LS) localization backend.

PMID:
42679269
Bibliographic data and abstract were imported from PubMed on 02 Sep 2026.

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