Detecting Moving Targets by Use of Soliton Resonances

TBMG-1096

10/01/2003

Abstract
Content

A proposed method of detecting moving targets in scenes that include cluttered or noisy backgrounds is based on a soliton-resonance mathematical model. The model is derived from asymptotic solutions of the cubic Schroedinger equation for a one-dimensional system excited by a position-and-time- dependent externally applied potential. The cubic Schroedinger equation has general significance for time-dependent dispersive waves. It has been used to approximate several phenomena in classical as well as quantum physics, including modulated beams in nonlinear optics, and superfluids (in particular, Bose-Einstein condensates). In the proposed method, one would take advantage of resonant interactions between (1) a soliton excited by the position-and-time-dependent potential associated with a moving target and (2) "eigen-solitons," which represent dispersive waves and are solutions of the cubic Schroedinger equation for a time-independent potential.

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Citation
"Detecting Moving Targets by Use of Soliton Resonances," Mobility Engineering, October 1, 2003.
Additional Details
Publisher
Published
Oct 1, 2003
Product Code
TBMG-1096
Content Type
Magazine Article
Language
English