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Titlebook: Atmospheric Effects on Radar Target Identification and Imaging; Propagation Effects H. E. G. Jeske Book 1976 D. Reidel Publishing Company,

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期刊全稱Atmospheric Effects on Radar Target Identification and Imaging
期刊簡(jiǎn)稱Propagation Effects
影響因子2023H. E. G. Jeske
視頻videohttp://file.papertrans.cn/165/164620/164620.mp4
學(xué)科分類Nato Science Series C:
圖書封面Titlebook: Atmospheric Effects on Radar Target Identification and Imaging; Propagation Effects  H. E. G. Jeske Book 1976 D. Reidel Publishing Company,
影響因子The Advanced Study Institute (ASI) under discussion was initiated by the "Special Programme Panel on Radio- meteorology" of the Scientific Affairs Division of NATO. The domain of this panel - and consequently the topics of their former ASI-~rogrammes - is the influ- ence of the non-ionized atmosphere on electromagnetic wave propagation, its prediction and its use as a re- mote sensing technique. It is the final goal to inform radio and radar engineers about the various defects caused by the propagation medium atmosphere. Today there exist high-sensitive radar systems which can pro- vide identification and produce images of distant ob- jects very accurately by measuring a) the effect of the target on the shape of a short radar pulse, or b) the wave front (phase and amplitude distribution) and its orientation in space. But usuallv the radar-to-target path is through the inhomogeneous and turbulent atmo- sphere and so the absolut limits of the system are very often determined by this atmosphere. It was the plan of this ASI to arrange an interdisciplinary information exchange between radar experts and propagation specia- lists in order to get a better understanding of the susceptibilit
Pindex Book 1976
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Side-Looking Radara method for detecting objects such as aircraft, vehicles or ships; and to that extent he would be correct. He might even add that other echoes from sea, clouds, rain or land was something called clutter to be eliminated as effectively as possible.
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Azimuth Compression Processing of Real Slar Datai Research Laboratories. During the initial phase of this investigation an application of digital techniques to a Doppler signal processor was considered where radar return data was cross-correlated with a bank of single-tone sinusoidal filters. In a practical system the operation would be repeated
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On Some Parallelisms between Radar and Sonar Transmission Channels model. Acoustic and electromagnetic wave propagation, with some restrictions, can be treated with nearly identical formal expressions. Common and analogous aspects of radar and sonar are presented, together with some concepts, models and methodologies elaborated for an underwater transmission chann
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