This paper has presented the basis
of a compound multiphase waveform design with additional amplitude modulation,
capable of controlling a waveform pick-factor, suitable for use with marine
radar. The waveform shows good Doppler tolerance, with the low side-lobes
performance maintained over the central zone of an ambiguity function. A clear
waveform design procedure has been presented that does not require the
implementation of numerical optimization procedures. It has been shown that a
compromise between side-lobes suppression and the value of pick-factor can be
found. These waveforms allow achieving better results as compared to compound
multiphase waveforms without additional amplitude modulation under mismatched
weighting filtering. In this article we considered periodic mode of Radar
composite signal ambiguity function cross-ambiguity function amplitude modulation periodic mode
This paper has presented the basis
of a compound multiphase waveform design with additional amplitude modulation,
capable of controlling a waveform pick-factor, suitable for use with marine
radar. The waveform shows good Doppler tolerance, with the low side-lobes
performance maintained over the central zone of an ambiguity function. A clear
waveform design procedure has been presented that does not require the
implementation of numerical optimization procedures. It has been shown that a
compromise between side-lobes suppression and the value of pick-factor can be
found. These waveforms allow achieving better results as compared to compound
multiphase waveforms without additional amplitude modulation under mismatched
weighting filtering. In this article we considered periodic mode of Radar
composite signal ambiguity function cross-ambiguity function amplitude modulation periodic mode
Subjects | Computer Software, Electrical Engineering |
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Journal Section | Articles |
Authors | |
Publication Date | December 31, 2017 |
Acceptance Date | December 29, 2017 |
Published in Issue | Year 2017 Volume: 1 Issue: 1 |