Sentence examples for position of scattering from inspiring English sources

Exact(4)

The image of range residence time domain was shown in Figure 4, and obviously owing to the velocity component in z direction, the position of scattering points changed continuously.

The estimation for the spatial position of scattering point could easily be realized through detecting the peaks in parameter domain.

By taking advantage of the sine envelope of spin target, the 3D position of scattering point was estimated in the form of curve integral within range compression domain, thus the extraction of 3D spatial information of the spin target could be realized, and this algorithm was tested to be valid through simulation experiment.

In this article, sine envelope of spin target was used to estimate the 3D position of scattering point in the form of curvilinear integral within distance compressed domain, thus the extraction of 3D spatial information of the spin target could be realized.

Similar(56)

Conventional target imaging algorithm fails to make full use of the rotating features of the target to obtain the characteristics of target space, and the speedy spin of targets will cause the dramatic changes in the positions of scattering center within short observation session, which may lead to the failure of imaging algorithm.

It is shown that the CoSaMP and the proposed Bayesian method come out with clearer images and are capable to recover the true position of scatters, compared with the traditional method of FFT, even with smaller randomly measures.

Aiming at such a special phenomenon of the space target, the time frequency distribution curve of echoes in each scattering center could be mapped onto the parameter space to obtain the position of each scattering center by taking advantage of Hough transformation, thus the 3D features of spin target could be obtained.

In general, amplitudes and initial phases usually reflect the relative positions of scattering centers, which can be used for space reconstruction and imaging of micro-motion targets.

Time-resolved light scattering investigation showed that the process of SD during curing was different from that in ordinary thermally induced SD, i.e. qm, the wavenumber q at the peak position of the scattering profile, increases with time in the early stage of curing.

The relative position of the scattering centers is a key feature in the missile target recognition task.

The sample chamber between the illumination objective and detection objective 1 is drawn in more detail on the right side of the schematic showing the position of the scattering layer and of the glass capillary containing the sample.

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