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Improved detection and false alarm rejection using FLGPR and color imagery in a forward-looking system

  • Timothy C. Havens
  • , Christopher J. Spain
  • , K. C. Ho
  • , James M. Keller
  • , Tuan T. Ton
  • , David C. Wong
  • , Mehrdad Soumekh
  • University of Missouri
  • United States Army

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

26 Scopus citations

Abstract

Forward-looking ground-penetrating radar (FLGPR) has received a significant amount of attention for use in explosivehazards detection. A drawback to FLGPR is that it results in an excessive number of false detections. This paper presents our analysis of the explosive-hazards detection system tested by the U.S. Army Night Vision and Electronic Sensors Directorate (NVESD). The NVESD system combines an FLGPR with a visible-spectrum color camera. We present a target detection algorithm that uses a locally-adaptive detection scheme with spectrum-based features. The remaining FLGPR detections are then projected into the camera imagery and image-based features are collected. A one-class classifier is then used to reduce the number of false detections. We show that our proposed FLGPR target detection algorithm, coupled with our camera-based false alarm (FA) reduction method, is effective at reducing the number of FAs in test data collected at a US Army test facility.

Original languageEnglish
Title of host publicationDetection and Sensing of Mines, Explosive Objects, and Obscured Targets XV
DOIs
StatePublished - 2010
EventDetection and Sensing of Mines, Explosive Objects, and Obscured Targets XV - Orlando, FL, United States
Duration: Apr 5 2010Apr 9 2010

Publication series

NameProceedings of SPIE - The International Society for Optical Engineering
Volume7664

Conference

ConferenceDetection and Sensing of Mines, Explosive Objects, and Obscured Targets XV
Country/TerritoryUnited States
CityOrlando, FL
Period04/5/1004/9/10

Keywords

  • Sensor fusion
  • false alarm rejection
  • forward-looking explosive hazards detection
  • ground-penetrating radar

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