2022
DOI: 10.3390/rs14225863
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Classification of Radar Targets with Micro-Motion Based on RCS Sequences Encoding and Convolutional Neural Network

Abstract: Radar cross section (RCS) sequences, an easy-to-obtain target feature with small data volume, play a significant role in radar target classification. However, radar target classification based on RCS sequences has the shortcomings of limited information and low recognition accuracy. In order to overcome the shortcomings of RCS-based methods, this paper proposes a spatial micro-motion target classification method based on RCS sequences encoding and convolutional neural network (CNN). First, we establish the mic… Show more

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Cited by 6 publications
(2 citation statements)
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“…U t represents the skew-symmetric matrix of tumbling angular velocity ω t . Precession can be considered as the combination of spinning and coning motion, and nutation can be considered as the combination of spinning, coning, and wobbling [25]. Assume c and s represent the coning matrix and the spinning matrix, respectively.…”
Section: Space Target Micro-motion Characteristics Analysismentioning
confidence: 99%
“…U t represents the skew-symmetric matrix of tumbling angular velocity ω t . Precession can be considered as the combination of spinning and coning motion, and nutation can be considered as the combination of spinning, coning, and wobbling [25]. Assume c and s represent the coning matrix and the spinning matrix, respectively.…”
Section: Space Target Micro-motion Characteristics Analysismentioning
confidence: 99%
“…The micro-motion produces a Doppler modulation of the radar echo which is known as the "micro-Doppler effect". Using the micro-Doppler effect, parameter extraction, classification and identification of targets can be achieved [1] [2] . In the single-base radar regime, it is difficult to obtain the complete motion information of the target only by extracting the features on the radial projection plane.…”
Section: Introductionmentioning
confidence: 99%