Multichannel System Identification and Detection Using Output Data Techniques. Volume II.

Abstract

The multichannel innovations-based detection algorithm (MIBDA) methodology formulated in Phase I was developed in full and evaluated in the context of two applications: (a) airborne surveillance phased array radar systems, and (b) computer based electrocardiogram ECG) diagnosis. A software simulation was developed to generate simulated multichannel phased array radar data. This software was exercised to represent ground clutter as the output of a state variable model (SVM), and to assess the performance of such models in the MIBDA. The MIBDA was modified and extend to the automated diagnosis of ECG traces. MIBDA performance for ECG diagnosis was assessed using th Common Standards for Quantitative Electrocardiography (CSE) database. Analysis and simulation results indicate that the MIBDA offers a valid alternative to conventional systems in both of the applications considered. This suggests also that the MIBDA can be configured to apply to a wide range of problem areas. Volume I presents the MIBDA methodology, SVM identification algorithms, MIBDA design and performance evaluation issues, and simulation results for both applications. Volume II presents the analytic and software model for airborne surveillance phased array radar systems.

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Document Details

Document Type
Technical Report
Publication Date
May 01, 1997
Accession Number
ADA327313

Entities

People

  • Dennis W. Davis
  • Jaime R. Roman

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Airborne
  • Algorithms
  • Arrays
  • Clutter
  • Detection
  • Geometry
  • Ground Clutter
  • Identification
  • Phased Array Radar
  • Phased Arrays
  • Power Spectra
  • Radar
  • Radiation
  • Simulations
  • Standards
  • Three Dimensional
  • Two Dimensional

Readers

  • Aerial Delivery - Logistics and Supply Chain Management.
  • Computational Modeling and Simulation
  • Radar Systems Engineering.