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High frequency surface wave radar as a modern ocean detection and monitoring of remote sensing in the field of one of the main new technologies, vertical polarization antenna radiation electromagnetic waves, the use of high frequency band (3~ 30MHz) electromagnetic waves to achieve the conductive sea level bypass propagation, propagation attenuation is small and fast, can be achieved in all-weather time to achieve ultra-long-distance sea wide-area detection. In practical engineering applications of radar, there are a variety of clutter interference, and ionospheric clutter often seriously…mehr

Produktbeschreibung
High frequency surface wave radar as a modern ocean detection and monitoring of remote sensing in the field of one of the main new technologies, vertical polarization antenna radiation electromagnetic waves, the use of high frequency band (3~ 30MHz) electromagnetic waves to achieve the conductive sea level bypass propagation, propagation attenuation is small and fast, can be achieved in all-weather time to achieve ultra-long-distance sea wide-area detection. In practical engineering applications of radar, there are a variety of clutter interference, and ionospheric clutter often seriously affects the detection performance of radar, so this thesis will start from the characteristics of ionospheric clutter of high-frequency surface wave radar, combined with neural networks, establish a model of ionospheric clutter, so as to achieve the suppression of ionospheric clutter.
Autorenporträt
Shang Shang joined Jiangsu University of Science and Technology, China in 2014 and is currently an Assistant Professor. She received the Ph.D. degree in Information and Communication Engineering from Harbin Institute of Technology. Her research interest includes radar signal processing, weak signal detection and clutter suppression.