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ELAA Near-Field Localization and Sensing with Partial Blockage Detection

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arxiv 2402.15857 v1 pith:HD3N5ERV submitted 2024-02-24 eess.SP

classification eess.SP
keywords blockagelocalizationsensingdetectionperformancealgorithmantennasblocked
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High-frequency communication systems bring extremely large aperture arrays (ELAA) and large bandwidths, integrating localization and (bi-static) sensing functions without extra infrastructure. Such systems are likely to operate in the near-field (NF), where the performance of localization and sensing is degraded if a simplified far-field channel model is considered. However, when taking advantage of the additional geometry information in the NF, e.g., the encapsulated information in the wavefront, localization and sensing performance can be improved. In this work, we formulate a joint synchronization, localization, and sensing problem in the NF. Considering the array size could be much larger than an obstacle, the effect of partial blockage (i.e., a portion of antennas are blocked) is investigated, and a blockage detection algorithm is proposed. The simulation results show that blockage greatly impacts performance for certain positions, and the proposed blockage detection algorithm can mitigate this impact by identifying the blocked antennas.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Near-Field Multiuser Localization Based on Extremely Large Antenna Array with Limited RF Chains

    eess.SP 2025-06 conditional novelty 5.0 of 10

    APLE-LM uses array partitioning and message passing to localize multiple users in the near field of an extremely large antenna array with limited RF chains, approaching the Bayesian Cramér-Rao bound at high SNR.

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