On the probability distribution of monopulse measurements in the presence of sea-surface induced multipath

W.D. Flair, Maïté Brandt-Pearce · 2002

In tracking of low elevation targets with a monopulse radar, the presence of reflections from the sea surface can cause severe errors in the direction of arrival (DOA) measurements of the target. Since the target echoes that are received directly and via the sea surface are unresolved in time and frequency, tracking targets in the presence of sea surface induced multipath is a special case of tracking unresolved targets. The sea surface reflection consists of a specular (coherent) component and a diffuse (noncoherent) component. The probability density function of the measured amplitude of the sum signal and the amplitude conditioned means and variances of the in-phase and quadrature monopulse ratios are given for low elevation targets in the presence of sea surface induced multipath.

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