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On Runtime Reduction in 3D Extended Object Tracking by Measurement Downsampling

  • In 3D extended object tracking (EOT), well-established models exist for tracking the object extent using various shape priors. A single update, however, has to be performed for every measurement using these models leading to a high computational runtime for high-resolution sensors. In this paper, we address this problem by using various model-independent downsampling schemes based on distance heuristics and random sampling as pre-processing before the update. We investigate the methods in a simulated and real-world tracking scenario using two different measurement models with measurements gathered from a LiDAR sensor. We found that there is a huge potential for speeding up 3D EOT by dropping up to 95\% of the measurements in our investigated scenarios when using random sampling. Since random sampling, however, can also result in a subset that does not represent the total set very well, leading to a poor tracking performance, there is still a high demand for further research.

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Metadaten
Author:Tim BaurORCiD, Johannes ReuterORCiD, Uwe D. HanebeckORCiD
URN:urn:nbn:de:bsz:kon4-opus4-49697
URL:https://isas.iar.kit.edu/pdf/SDF-MFI23_Baur.pdf
DOI:https://doi.org/10.1109/SDF-MFI59545.2023.10361508
ISBN:979-8-3503-8258-7
ISBN:979-8-3503-8259-4
Parent Title (English):IEEE Symposium Sensor Data Fusion and International Conference on Multisensor Fusion and Integration for Intelligent Systems (SDF-MFI 2023), 27.-29. November 2023, Bonn, Germany
Publisher:IEEE
Document Type:Conference Proceeding
Language:English
Year of Publication:2023
Release Date:2023/12/07
Tag:3D Extended Object Tracking; Elliptic Cylinder; Shape Tracking; Downsampling; Runtime Reduction
Page Number:6
Institutes:Institut für Systemdynamik - ISD
Open Access?:Ja
Relevance:Keine peer reviewed Publikation (Wissenschaftlicher Artikel und Aufsatz, Proceeding, Artikel in Tagungsband)
Licence (German):License LogoUrheberrechtlich geschützt