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Sensor Signal Processing for Defence (SSPD 2010)

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  • Location: London, UK
  • Conference date: 29-30 Sept. 2010
  • ISBN: 978-1-84919-617-8
  • Conference number: 2010/003
  • The following topics are dealt with: sensor signal processing; array signal processing; radar signal processing; sonar signal processing; audio signal processing; multimodal signal processing; sensor fusion; image classification; video classification; and wireless sensor network.

1 - 20 of 30 items found

  • Underwater target detection in synthetic aperture sonar data
  • Synthetic signals for signal processing
  • On the convergence behavior of recursive adaptive noise cancellation structure in the presence of crosstalk
  • Soft rake and DFE based IDMA systems for underwater acoustic channels
  • Monte Carlo realisation of a distributed multi-object fusion algorithm
  • Robust multi-object sensor fusion with unknown correlations
  • A robust technique for person-background segmentation in video sequences based on the codebook method of background subtraction and head tracking
  • Unsupervised feature based abnormality detection
  • Analysis of Coulter counting data from nanopores using clustering
  • Sensor integration using a service oriented architecture
  • Array shape self-calibration using particle swarm optimization and decaying diagonal loading
  • Fractional Fourier transform based monopulse radar for combating jamming interference
  • The figure of merit 'C' for comparing superresolution direction-finding algorithms
  • Maximum likelihood sub-arrayed MIMO radar receiver
  • Knowledge-aided STAP algorithm using affine combination of inverse covariance matrices for heterogenous clutter
  • Radar matched filtering using the fractional fourier transform
  • Fractional RDA and enhanced FrCSA for SAR imaging
  • The performance of a fractional Fourier transform based detector for frequency modulated signals
  • Reduced-rank STAP for airborne radar based on switched joint interpolation, decimation and filtering algorithm
  • On the energy efficiency of wireless sensor networks with local fusion centers
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