Related Experiment Video
Updated: May 2, 2026

06:25
Time Multiplexing Super Resolving Technique for Imaging from a Moving Platform
Published on: February 12, 2014
7.8K
Analysis and exploitation of multipath ghosts in radar target image classification
Summary
Multipath ghosts in radar imaging, caused by environmental reflections, can be localized and focused. Exploiting these ghosts improves target classification performance by up to 32%.
Area of Science:
- Radar Imaging
- Signal Processing
- Electromagnetics
Background:
- Multipath reflections in radar systems create "ghost" images distinct from the direct target echo.
- Understanding the characteristics of these multipath ghosts is crucial for accurate target identification.
Purpose of the Study:
- To analyze the relationship between multipath ghosts and direct target images in radar.
- To define a multipath point spread function (PSF) for ghost localization.
- To investigate the potential of utilizing ghosts for enhanced target classification.
Main Methods:
- Definition of a multipath point spread function (PSF) accounting for specular reflections.
- Analysis of PSF to determine ghost focusing capabilities in different radar configurations (far-field SAR vs. full array).
- Demonstration of ghost exploitation using experimental data and a naïve Bayesian classifier.
Main Results:
- The study defines a multipath PSF enabling localization of ghost images.
- Certain ghosts are focusable only in the far-field synthetic aperture radar (SAR) scenario, not with full arrays.
- Ghosts are demonstrated to be equivalent to direct target images from alternative observation angles.
- A performance gain of up to 32% in target classification was achieved by exploiting ghosts.
Conclusions:
- Multipath ghosts can be mathematically characterized and localized using a defined PSF.
- The equivalence of ghosts to off-angle direct target images provides a pathway for improved target recognition.
- Exploiting radar multipath ghosts offers a significant enhancement for target classification systems.

