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Micro-Doppler Characteristics of Radar Targets.

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Zhang, Qun
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Kidlington, United Kingdom : Butterworth-Heinemann, 2016, �2017.
Temas:
Acceso en línea:Texto completo
Tabla de Contenidos:
  • Front Cover; MICRO-DOPPLER CHARACTERISTICS OF RADAR TARGETS; Evolve page; MICRO-DOPPLER CHARACTERISTICS OF RADAR TARGETS; Copyright; CONTENTS; PREFACE; ABBREVIATIONS; One
  • Introduction; 1.1 SCATTERING CENTER MODEL; 1.2 CONCEPT OF MICRO-DOPPLER EFFECT; 1.2.1 Doppler Effect; 1.2.2 Micro-Doppler Effect; 1.3 MICRO-DOPPLER EFFECT RESEARCH AND APPLICATIONS; 1.3.1 Space Target Recognition; 1.3.2 Aerial Target Recognition; 1.3.3 Ground Motion Target Recognition; 1.4 THE ORGANIZATION OF THIS BOOK; REFERENCES; Two
  • Micro-Doppler Effect in Narrowband Radar.
  • 2.1 MICRO-DOPPLER EFFECT OF TARGETS WITH ROTATION2.2 MICRO-DOPPLER EFFECT OF TARGETS WITH VIBRATION; 2.3 MICRO-DOPPLER EFFECT OF TARGETS WITH PRECESSION; 2.4 INFLUENCE ON MICRO-DOPPLER EFFECT WHEN THE RADAR PLATFORM IS VIBRATING; REFERENCE; Three
  • Micro-Doppler Effect in Wideband Radar; 3.1 WIDEBAND SIGNAL ECHO MODEL; 3.2 MICRO-DOPPLER EFFECT IN LINEAR FREQUENCY MODULATION SIGNAL RADAR; 3.2.1 Linear Frequency Modulation Signal; 3.2.2 Range Imaging; 3.2.3 Micro-Doppler Effect of Targets With Rotation [1]; 3.2.4 Micro-Doppler Effect of Targets With Vibration.
  • 3.2.5 Micro-Doppler Effect of Targets With Procession3.3 MICRO-DOPPLER EFFECT IN STEPPED-FREQUENCY CHIRP SIGNAL RADAR [2,3]; 3.3.1 Range Imaging; 3.3.2 Migration and Wrapping of Range Profile Induced by Micromotion; 3.3.3 Micro-Doppler Effect of Targets With Rotation or Vibration; 3.4 MICRO-DOPPLER EFFECT IN LINEAR FREQUENCY MODULATION CONTINUOUS WAVE SIGNAL RADAR; 3.4.1 Linear Frequency Modulation Continuous Wave Signal; 3.4.2 Migration and Broadening of Range Profile Induced by Micromotion; 3.4.3 Micro-Doppler Effect of Targets With Rotation or Vibration; REFERENCES.
  • Four
  • Micro-Doppler Effect in Bistatic Radar4.1 BISTATIC RADAR; 4.2 MICRO-DOPPLER EFFECT IN NARROWBAND BISTATIC RADAR; 4.3 MICRO-DOPPLER EFFECT IN WIDEBAND BISTATIC RADAR; 4.3.1 Range Resolution of Bistatic Radar; 4.3.2 Micro-Doppler Effect Analysis; REFERENCES; Five
  • Micro-Doppler Feature Analysis and Extraction; 5.1 TIME-FREQUENCY ANALYSIS METHOD; 5.1.1 Introduction of Time-Frequency Analysis Method; 5.1.1.1 Linear Time-Frequency Analysis Method; 5.1.1.2 Quadratic Time-Frequency Method; 5.1.2 Micro-Doppler Feature Analysis Based on Time-Frequency Analysis; 5.1.2.1 Narrowband Radar.
  • 5.1.2.2 Wideband Radar5.2 IMAGE PROCESSING METHOD; 5.2.1 Mathematical Morphology Image Processing; 5.2.2 Hough Transform [5]; 5.2.3 Application of Image Processing Method in Micro-Doppler Feature Extraction in SFCS Radar [7]; 5.2.3.1 Algorithm; 5.2.3.2 Simulation; 5.2.3.3 Robustness Discussion; 5.3 ORTHOGONAL MATCHING PURSUIT DECOMPOSITION METHOD; 5.3.1 Application in Narrowband Radar; 5.3.2 Application in Wideband Radar; 5.3.2.1 Algorithm; 5.3.2.2 Simulation; 5.4 EMPIRICAL-MODE DECOMPOSITION METHOD; 5.5 HIGH-ORDER MOMENT FUNCTION ANALYSIS METHOD; 5.5.1 Application in Narrowband Radar.