Cite this DOI
10.46243/jstj.2019.v4.i3.92 · Performance comparison between conventional and modified Range Doppler Algorithm in real time applications
APA (7th edition)
I. Hemalatha, & P. V. Sridevi (2019). Performance comparison between conventional and modified Range Doppler Algorithm in real time applications. *Journal of Science & Technology*, *04*(03), 01–13. https://doi.org/10.46243/jstj.2019.v4.i3.92
⬇ text Italics are shown as *asterisks* in plain text — the journal or book title and the volume.
BibTeX
@article{ihemalatha2019performance,
author = {I. Hemalatha and P. V. Sridevi},
title = {{Performance comparison between conventional and modified Range Doppler Algorithm in real time applications}},
journal = {Journal of Science \& Technology},
year = {2019},
month = {may},
volume = {04},
number = {03},
pages = {01--13},
publisher = {Longman Publishers},
issn = {2456-5660},
doi = {10.46243/jstj.2019.v4.i3.92},
url = {https://doi.org/10.46243/jstj.2019.v4.i3.92},
language = {en},
abstract = {Synthetic aperture radar is an active remote sensing approach that transmits the known wavelength signal and measures the reflected wave from the scene. Moving target detection, imaging, and velocity estimation using raw data are active research fields with civilian and military applications. The synthetic aperture radar endures from the image degradation because of phase errors present in the received signal. These phase errors give rise to poor focus quality, spurious targets, loss of resolution and erroneous velocities. The primary objective of the paper is to produce a high-resolution image of the targets and the moving targets motion estimation present in the scene in the presence of phase errors. The modified range-Doppler algorithm performs the range migration correction and the focus filtering with the wavelet decomposition to improve the resolution of the target image. The parameters extracted from the range migration correction and azimuth filtering is used to estimate the moving target velocity. The modified RDA using Sym8 wavelet decomposition levels with AOPM for moving target velocity estimation of SAR image have the average percentage of accuracy is 1.99. This proposed RDA method gives the close approximation to the actual velocity value and also improves the focus quality of the target image when compared with the conventional RDA.}
}RIS (EndNote, Zotero, Mendeley)
TY - JOUR TI - Performance comparison between conventional and modified Range Doppler Algorithm in real time applications AU - I. Hemalatha AU - P. V. Sridevi JO - Journal of Science & Technology PY - 2019 DA - 2019/05/01/ VL - 04 IS - 03 SP - 01 EP - 13 PB - Longman Publishers SN - 2456-5660 LA - en AB - Synthetic aperture radar is an active remote sensing approach that transmits the known wavelength signal and measures the reflected wave from the scene. Moving target detection, imaging, and velocity estimation using raw data are active research fields with civilian and military applications. The synthetic aperture radar endures from the image degradation because of phase errors present in the received signal. These phase errors give rise to poor focus quality, spurious targets, loss of resolution and erroneous velocities. The primary objective of the paper is to produce a high-resolution image of the targets and the moving targets motion estimation present in the scene in the presence of phase errors. The modified range-Doppler algorithm performs the range migration correction and the focus filtering with the wavelet decomposition to improve the resolution of the target image. The parameters extracted from the range migration correction and azimuth filtering is used to estimate the moving target velocity. The modified RDA using Sym8 wavelet decomposition levels with AOPM for moving target velocity estimation of SAR image have the average percentage of accuracy is 1.99. This proposed RDA method gives the close approximation to the actual velocity value and also improves the focus quality of the target image when compared with the conventional RDA. DO - 10.46243/jstj.2019.v4.i3.92 UR - https://doi.org/10.46243/jstj.2019.v4.i3.92 ER -
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} ⬇ .json What citeproc and reference managers read; the DOI system hands it out for Accept: application/vnd.citationstyles.csl+json, and so does this registry's resolver.
From the record as registered (version 2) — the record and its history. Programs: https://registry.smartscholars.in/api.php?action=cite&doi=10.46243%2Fjstj.2019.v4.i3.92 gives all four in one JSON answer.
