Performance Comparison of Superresolution Array Processing Algorithms. Revised

Abstract

This report summarizes the results of the initial phase of a comprehensive simulation study of alternative signal processing algorithms for data adaptive superresolution direction finding and spatial nulling to support signal copy in the presence of strong cochannel interference. The need for such a study arises because, although most of the techniques evaluated have been documented in the literature, no systematic comparison has heretofore been undertaken. The general approach of the current study is to simulate a sequence of increasingly more general, i.e, realistic, signaling environments, and to expose each of the more promising algorithms to all of the "standardized" experiments, in turn. For the initial phase of the inquiry, we have selected an ideal environment characterized by a uniform, linear array of identical isotropic elements and perfect receivers. In addition, partial results are obtained for the case when the array steering vectors are in error by a small amount which might be caused by residual calibration errors, unmodeled multipath distortions, near-field emitters, etc.

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Document Details

Document Type
Technical Report
Publication Date
Jun 15, 1998
Accession Number
ADA347296

Entities

People

  • A. J. Barabell
  • D. F. Delong
  • J. Capon
  • J. R. Johnson
  • K. D. Senne

Organizations

  • Massachusetts Institute of Technology

Tags

Communities of Interest

  • Energy and Power Technologies
  • Materials and Manufacturing Processes

DTIC Thesaurus Topics

  • Accuracy
  • Algorithms
  • Angle Of Arrival
  • Arrays
  • Calibration
  • Computational Science
  • Computer Simulations
  • Data Science
  • Detectors
  • Direction Finding
  • False Alarms
  • Information Processing
  • Information Science
  • Knowledge Management
  • Linear Arrays
  • Random Variables
  • Statistical Algorithms

Readers

  • Adaptive Control and Estimation with Uncertainty in Dynamic Systems.
  • Computational Modeling and Simulation
  • Phased Array Antenna Design.