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Accurate Direct Positioning in Distributed MIMO Using Delay-Doppler Channel Measurements

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arxiv 2404.15936 v2 pith:ZREY2CL5 submitted 2024-04-24 eess.SP

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keywords d-mimopositioningaccuracychanneldelay-dopplerdirectdistributedmeasurements
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Distributed multiple-input multiple-output (D-MIMO) is a promising technology for simultaneous communication and positioning. However, phase synchronization between multiple access points in D-MIMO is challenging and methods that function without the need for phase synchronization are highly desired. Therefore, we present a method for D-MIMO that performs direct positioning of a moving device based on the delay-Doppler characteristics of the channel state information (CSI). Our method relies on particle-filter-based Bayesian inference with a state-space model. We use recent measurements from a sub-6 GHz D-MIMO OFDM system in an industrial environment to demonstrate near-centimeter accuracy under partial line-of-sight (LoS) conditions and decimeter accuracy under fully obstructed LoS.

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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. Decentralized Localization of Distributed Antenna Array Elements Using an Evolutionary Algorithm

    eess.SP 2024-11 conditional novelty 5.0 of 10

    A distributed antenna array is localized with 0.82 mm mean error at 34 dB link SNR by combining two-tone two-way time-transfer ranging with an evolutionary algorithm that completes missing inter-node distances.

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