Subaperture smoothness-based auxiliary clutter sample selection method
A screening method and sub-aperture technology, applied in radio wave measurement systems, instruments, etc., can solve problems such as pollution, output signal-to-noise ratio decline, etc., achieve the effect of reducing degrees of freedom, reducing the complexity of rejection, and improving the effect of rejection
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[0048] Flow chart as figure 1 As shown, the steps are as follows:
[0049] Step 1 Obtain range pulse pressure-azimuth Doppler data of multiple channels X n (r,m), r∈[1,R], m∈[1,M], r is the number of distance gates, and m is the number of Doppler units.
[0050] Step 2 Use the ultra-low sidelobe windowing matrix to perform sub-aperture smoothing on the collected multi-channel data to obtain the P group of sub-aperture sliding window data X p (r,m), as follows:
[0051]
[0052] Among them, p represents the p-th group of sliding window data, d is the distance between the array elements, and λ is the signal wavelength of the signal transmitted by the space-based radar or airborne radar. β is the weighting coefficient corresponding to the ultra-low side lobe window, considering the main lobe loss, main lobe widening, first side lobe level, peak side lobe, integrated side lobe ratio index to determine the window function type and input parameters of this type, select 5 Sidelobe, -45dB...
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