Download Applications of space-time adaptive processing by Richard Klemm PDF

By Richard Klemm

This new textual content, from the bestselling rules of Space-Time Adaptive Processing (IEE, 2002), discusses a number of purposes of house time adaptive processing, together with functions in OTH-radar, flooring objective monitoring, STAP in genuine international muddle environments, jammer cancellation, supperresolution, lively sonar, seismics and communications. The publication offers a special evaluation of the extensive box of space-time processing and is split into elements: the 1st facing the classical adaptive suppression of airborne and spacebased radar muddle, and the second one comprising miscellaneous functions in different fields comparable to communications, underwater sound and seismics.

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Principles of Space-Time Adaptive Processing, third version - ISBN 9780863415661 Ultrawideband Radar Measurements: research and processing - ISBN 9780852968949

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Extra resources for Applications of space-time adaptive processing

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16 shows the clutter bowl partitioned into regions associated with different range intervals. It is apparent that adapting to data corresponding to each interval in turn leads to a reduction in the angle-Doppler region over which clutter rejection is required. For example, at long ranges the clutter from a particular range interval corresponds to a very narrow annular ring that is elliptical in the / u , / D domain. g. g. see References 3 and 4. It should be noted that the former approach relies on a planar array with elevation degrees of freedom, which allow spatial nulls to be formed at particular elevation angles, and is not appropriate for detecting targets masked by mainlobe clutter.

E. 17. Returns from clutter at a single range lie at a constant cone angle from the array centre. Range-dependent clutter suppression therefore requires nulls to be formed at a fixed cone angle, y, from the equivalent planar array. It is well known that nulls of this type can be synthesised using circular array geometries. 17 Equivalent spatial planar array, STAP in forward-looking airborne radar the equivalent planar array being circular. The configuration of the two-dimensional array will, in general, be different for moving targets and hence desired signals will not be attenuated to the same degree as clutter.

The jammer rejection performance of pre-Doppler STAP and MTI/ABF approaches has previously been compared in Reference 20 where analysis and simulation results demonstrated that the STAP approach is relatively robust under conditions of manoeuvre. The advantage of using STAP rather than MTI/ABF can be deduced from examination of the structure and rank of the jamming covariance matrix in both cases. Any motion-induced increase in the rank of the matrix is likely to lead to a larger number of adaptive degrees of freedom being required for jammer rejection, higher adaptive sidelobe levels and a decrease in SNIR.

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