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On the Relative and Absolute Positioning Errors in Self-Localization Systems

Published: 01 November 2008 Publication History

Abstract

This paper considers the accuracy of sensor node location estimates from self-calibration in sensor networks. The total parameter space is shown to have a natural decomposition into relative and centroid transformation components. A linear representation of the transformation parameter space is shown to coincide with the nullspace of the unconstrained Fisher information matrix (FIM). The centroid transformation subspace-which includes representations of rotation, translation, and scaling-is characterized for a number of measurement models including distance, time-of-arrival (TOA), time-difference-of-arrival (TDOA), angle-of-arrival (AOA), and angle-difference-of-arrival (ADOA) measurements. The error decomposition may be applied to any localization algorithm in order to better understand its performance characteristics, and it may be applied to the Cramer-Rao bound (CRB) to determine performance limits in the relative and transformation domains. A geometric interpretation of the constrained CRB is provided based on the principal angles between the measurement subspace and the constraint subspace. Examples are presented to illustrate the utility of the proposed error decomposition into relative and transformation components.

Cited By

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  • (2024)Performance Bounds for Passive Sensing in Asynchronous ISAC SystemsIEEE Transactions on Wireless Communications10.1109/TWC.2024.343470423:11_Part_1(15872-15887)Online publication date: 1-Nov-2024
  • (2024)Enhancing Timeliness in Asynchronous Vehicle Localization: A Signal-Multiplexing Network Measuring ApproachIEEE Transactions on Intelligent Transportation Systems10.1109/TITS.2024.340478425:10(13729-13743)Online publication date: 1-Oct-2024
  • (2024)A Theoretical Framework for Relative LocalizationIEEE Transactions on Information Theory10.1109/TIT.2023.330519970:1(735-762)Online publication date: 1-Jan-2024
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Information & Contributors

Information

Published In

cover image IEEE Transactions on Signal Processing
IEEE Transactions on Signal Processing  Volume 56, Issue 11
November 2008
435 pages

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IEEE Press

Publication History

Published: 01 November 2008

Author Tags

  1. Constrained estimation
  2. CramÉr-Rao bound (CRB)
  3. Cramer-Rao bound
  4. Localization
  5. Principal angles
  6. Sensor networks
  7. Singular Fisher information
  8. localization
  9. principal angles
  10. sensor networks
  11. singular fisher information

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Cited By

View all
  • (2024)Performance Bounds for Passive Sensing in Asynchronous ISAC SystemsIEEE Transactions on Wireless Communications10.1109/TWC.2024.343470423:11_Part_1(15872-15887)Online publication date: 1-Nov-2024
  • (2024)Enhancing Timeliness in Asynchronous Vehicle Localization: A Signal-Multiplexing Network Measuring ApproachIEEE Transactions on Intelligent Transportation Systems10.1109/TITS.2024.340478425:10(13729-13743)Online publication date: 1-Oct-2024
  • (2024)A Theoretical Framework for Relative LocalizationIEEE Transactions on Information Theory10.1109/TIT.2023.330519970:1(735-762)Online publication date: 1-Jan-2024
  • (2022)Cooperative Localization in Massive NetworksIEEE Transactions on Information Theory10.1109/TIT.2021.312634668:2(1237-1258)Online publication date: 1-Feb-2022
  • (2021)Error Decomposition for Hybrid Localization Systems2021 IEEE International Intelligent Transportation Systems Conference (ITSC)10.1109/ITSC48978.2021.9564415(149-156)Online publication date: 19-Sep-2021
  • (2020)Cooperative Vision-Based Localization Networks with Communication Constraints2019 IEEE Global Communications Conference (GLOBECOM)10.1109/GLOBECOM38437.2019.9014198(1-6)Online publication date: 17-Jun-2020
  • (2016)On the Particle-Assisted Stochastic Search Mechanism in Wireless Cooperative LocalizationIEEE Transactions on Wireless Communications10.1109/TWC.2016.254566515:7(4765-4777)Online publication date: 8-Jul-2016
  • (2015)Joint relative position and velocity estimation for an anchorless network of mobile nodesSignal Processing10.1016/j.sigpro.2015.02.023115:C(66-78)Online publication date: 1-Oct-2015
  • (2013)Quantifying relationship between relative position error of localization algorithms and object identificationWireless Networks10.1007/s11276-012-0516-219:6(1037-1049)Online publication date: 1-Aug-2013
  • (2009)On the use of multipath geometry for wideband cooperative localizationProceedings of the 28th IEEE conference on Global telecommunications10.5555/1811982.1812109(4380-4385)Online publication date: 30-Nov-2009

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