Remote Sensing (Oct 2018)

3D Vibration Estimation from Ground-Based Radar

  • Andrea Monti-Guarnieri,
  • Paolo Falcone,
  • Davide d’Aria,
  • Giuseppe Giunta

DOI
https://doi.org/10.3390/rs10111670
Journal volume & issue
Vol. 10, no. 11
p. 1670

Abstract

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The paper proposes a method to estimate 2D/3D vibrations and displacements of mostly linear structures, like pipes, chimneys, towers, bridges from afar, based on synchronized Radars. The method takes advantage of Radar sensitivity to displacements to sense tiny deformations (up to tens of micron) with a time scale from milliseconds to hours. The key elements are: (a) The use of calibrators to remove at once both the tropospheric turbulence and the effect of radial motion, and (b) the compensation of interferences from fixed targets. The latter is performed by estimating and removing the contribution of interfering targets, based either on a proper data processing or by exploiting an ad-hoc motorized calibrator. Performance in terms of accuracy of the deformation field is evaluated theoretically and checked by tests carried out in laboratories and by full-scale acquisition campaigns.

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