Title :
Sequence comparison techniques for multisensor data fusion and target recognition
Author :
Libby, E.W. ; Maybeck, P.S.
Author_Institution :
Air Force Inst. of Technol., Wright-Patterson AFB, OH, USA
Abstract :
A new class of techniques for multisensor fusion and target recognition is proposed using sequence comparison by dynamic programming and multiple model estimation. The objective is to fuse information on the kinematic state and "nonkinematic" signature of unclassified targets, assessing the joint likelihood of all observed events for recognition. Relationships are shown to previous efforts in pattern recognition and state estimation. This research applies "classical" speech processing-related and other sequence comparison methods to moving target recognition, extends the efforts of previous researchers through improved fusion with kinematic information, relates the proposed techniques to Bayesian theory, and applies parameter identification methods to target recognition for improved understanding of the subject in general. The proposed techniques are evaluated and compared with existing approaches using the method of generalized ambiguity functions, which lends to a form of Cramer-Rao lower bound for target recognition.
Keywords :
Bayes methods; dynamic programming; estimation theory; radar target recognition; sensor fusion; target tracking; Bayesian theory; dynamic programming; joint likelihood; kinematic state; moving target recognition; multiple model estimation; multisensor data fusion; nonkinematic signature; parameter identification methods; sequence comparison techniques; target recognition; unclassified targets; Dynamic programming; Fuses; Kinematics; Pattern recognition; Speech processing; Speech recognition; State estimation; Target recognition; Target tracking; Vectors; Vehicles;
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on