4 edition of Optimal signal processing of frequency-stepped CW radar data found in the catalog.
Optimal signal processing of frequency-stepped CW radar data
by National Aeronautics and Space Administration, National Technical Information Service, distributor in [Washington, DC, Springfield, Va
Written in English
|Other titles||Optimal signal processing of frequency stepped CW radar data.|
|Statement||Gary A. Ybarra ... [et al.].|
|Series||[NASA contractor report] -- NASA-CR-202688., NASA contractor report -- NASA CR-202688.|
|Contributions||Ybarra, Gary A., United States. National Aeronautics and Space Administration.|
|The Physical Object|
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Transcript of proceedings
Optimal Signal Processing of Frequency-Stepped CW Radar Data Article (PDF Available) in IEEE Transactions on Microwave Theory and Techniques 43(1) February with 80 Reads. Get this from a library.
Optimal signal processing of frequency-stepped CW radar data. [Gary A Ybarra; United States. National Aeronautics and Space Administration.;]. Ybarra, G.A., et al.: Optimal signal processing of frequency-stepped CW radar data, IEEE Trans.
Microwave Theor Tech 43(1) () Google Scholar 4. Weiss, J.M.: Continuous-wave stepped-frequency radar for target ranging and motion : Jonah Gamba. The optimization technique is intended to maximize the target range resolution achievable from any set of frequency-stepped CW radar [Show full abstract] measurements made in such an environment.
Proc. SPIERadar/Ladar Processing and Applications, pg 2 (18 August ); doi: / Proc. SPIERadar Processing, Technology, and Applications, pg (5 November ); doi: / Effect of Doppler shift on the optimal processing of frequency-stepped CW radar data. Ultrawideband radar signal detection, estimation, and experiment.
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Consider the CW waveform emitted by the radar, having the form: () s (t) = A exp ȷ 2 π f o t, where f o is the carrier frequency. Accordingly, the reflected signal received by the radar is given by: () y (t) = ∑ k = 1 K β k s (t − τ k) exp ȷ 2 π u k t + ϖ 1 (t), where similar to by: 6.
Precision FMCW Short-Range Radar for Industrial Applications Boris A Atayants, Vlacheslav M Davydochkin, Victor V Ezerskiy, Valery S Parshin, Sergey M Smolskiy This book describes methods for making radar measurements of short distances in applications where physical contact with materials is.
() Data compression method based on information preservation for wideband radar LFM signal echo. The Journal of Engineering() Unknown noise removal via sparse representation by: Full text of "Advanced Ultrawideband Radar Signals, Targets, And Applications" See other formats.
The book presents the design, implementation, and characterization of microwave receiver circuits in CMOS and SiGe bipolar technologies. The applicability of a standard digital μm CMOS technology for realization of a 24 GHz narrow-band radar front-end sensor is investigated. The coherent radar signal is measured at different positions on a path perpendicular to the image plane (Ahmed et al., ).
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The FMCW radar uses a low-cost nonlinear voltage-controlled oscillator (VCO), operating at an IF of GHz to generate the frequency modulation of the radar system. This VCO signal is applied twice, first to generate the radar transmitter signal at 24 GHz, and then it.
Qasem, L.M. Reindl Nonlinear indoor tracking with range only measurements based on high frequency radar WSEAS Journal on Signal Processing, Seiten: - S. Schuster, S.
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American Research Press Rehoboth An optimal signal processing algorithm is derived for estimating the time delay and amplitude of each scatterer reflection using a frequency-stepped CW system. The channel is assumed to be composed of abrupt changes in the reflection coefficient profile.
Raman spectral post-processing for oral tissue discrimination - a step for an automatized diagnostic system. PubMed. Carvalho, Luis Felipe C S; Nogueira, Marcelo Saito; Neto, Láz.
Contents Chapter 1 Main Features of UWB Radars and Differences from Common Narrowband Radars Igor I. Immoreev Chapter 2 Improved Signal Detection in UWB Radars Igor I. Immoreev Chapter 3 High-Resolution Ultra-Wideband Radars Nasser J. Mohamed Chapter 4 Ultra-Wideband Radar Receivers James D.
Taylor Chapter 5 Compression of Wideband Returns from.Air and Spaceborne Radar Systems: An Introduction Phil Air and Spaceborne Radar Systems: An Introduction Philippe Lacomme Jean-Philippe Hardange Jean-Claude Marchais Eric Normant Translated from the French by Marie-Louise Freysz and Rodger Hickman.Agard Flight Test Technique Series Volume 4 Anttenae Patterns and Radar Reflection - Free download as PDF File .pdf), Text File .txt) or read online for free.