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In practice, it is dominated by the speckle component.
As has already been pointed out by Farina in [36] and by Greco in [37], for the sea clutter in a short time, its temporal correlation characteristic is dominated by the speckle component.
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The speckle component is associated with the detailed scatterers of the clutter in any range cell.
The correlation time of the speckle component is around milliseconds [36].
The correlation time of the speckle component achieves tens of milliseconds and the spiky component exhibits a much longer decorrelation time.
K-distribution is a particular form of the G model, which assumes both the tissue and the speckle component as gamma distribution [17].
Accordingly, the coherent signals z r,r=1,…,L under H0 hypothesis have fairly short temporal decorrelation time equal to that of the speckle component of sea clutter.
Equation (7) clearly shows that the overall normalized autocorrelation function of sea clutter is influenced by the correlation characteristics of the texture and speckle components.
It is well known that sea clutter consists of a speckle component modulated by texture.
Additionally, these parameters are significantly influenced by the speckle contrast and random noises.
Security is duplicated by the speckle and polarization characteristics of the procedure.
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