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We show that the waveform designed for stationary MIMO radar matches the desired beampattern closely, when the number of BS antennas NBS is considerably less than the number of radar antennas M, due to quasi-static interference channel.
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The efficient waveform designs found in living organisms are matched by equally well-adapted biological sensors.
In UWB waveform designing, the selection of basis functions is rather different from the traditional sense.
Extensive simulations demonstrate the effectiveness of the waveform designing method and GMTI with RPCA based method for MIMO SAR system.
As a consequence, the UWB waveform designing that can fully utilize spectral energy, and meanwhile can also effectively avoid specific band, has greatly been advanced in recent years.
The waveforms designed by this method outperform other commonly used waveforms for extended target detection.
Now, we compare the SCNR performance of the cognitive MIMO radar using the LFM waveforms designed by the proposed method with that of the system using FS LFM signals.
One of the waveform designs suitable for pulse compression is phase-coded waveform design.
Optimum waveform design methods are discussed.
Waveform design is a key issue in radar signal processing.
Hence the waveform design is critical for these modulation schemes.
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