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  4. State Representation of Eccentricity-Limited Targets for Bistatic Space Surveillance Radar Design
 
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2022
Conference Paper
Title

State Representation of Eccentricity-Limited Targets for Bistatic Space Surveillance Radar Design

Abstract
Knowing the parameter space of target dynamics helps designing and controlling a radar. For spaceborne targets, several state representations exist, each useful for different purposes. We present a method for determining the velocity of a resident space object at a given angle and range towards the observing radar receiver from its orbital parameters of eccentricity, longitude of ascending node and argument of periapsis. This enables the definition of a target state at a fixed position while preserving a dependency on the target's orbital eccentricity. From that the maximum duration of the Coherent Processing Interval (CPI) for a bistatic radar is computed for all targets at a fixed angle towards the receiver with eccentricities below a given limit. This allows to analyse if additional signal processing for focussing the target echo on a resolution cell is necessary.
Author(s)
Schily, Hans  
Fraunhofer-Institut für Kommunikation, Informationsverarbeitung und Ergonomie FKIE  
Schlangen, Isabel Christiane
Fraunhofer-Institut für Kommunikation, Informationsverarbeitung und Ergonomie FKIE  
Schwalm, Carolin
Fraunhofer-Institut für Kommunikation, Informationsverarbeitung und Ergonomie FKIE  
Charlish, Alexander Brendan
Fraunhofer-Institut für Kommunikation, Informationsverarbeitung und Ergonomie FKIE  
Hoffmann, Rudolf  
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Käske, Martin
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Knauf, Cordula
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Mainwork
RadarConf 2022, IEEE Radar Conference. Proceedings  
Conference
Radar Conference 2022  
DOI
10.1109/RadarConf2248738.2022.9764329
Language
English
Fraunhofer-Institut für Hochfrequenzphysik und Radartechnik FHR  
Fraunhofer-Institut für Kommunikation, Informationsverarbeitung und Ergonomie FKIE  
Keyword(s)
  • bistatic radar

  • coherent processing interval

  • radar

  • space surveillance

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