FORMATION OF DISGUISING INTERFERENCE PROTECTION FROM VIDEO LEAKS THROUGH TECHNICAL CHANNELS
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Abstract
We propose a method of forming a masking noise to protect the signal from leaking through technical channels. Video has a number of unique features to consider when solving the problem of leakage protection through technical channels. The aim is to protect the video signal leakage through technical channels. The problem is solved creating active masking noise that fed on the leak. The proposed method takes into account the masking features such as its timing signal due to the presence clock, static and dynamic video frames. The possibility of simultaneous storage of video in the presence of data synchronization is shown. Accumulation of static images, which significantly improves the signal to noise ratio is conducted. The necessity of creating a synchronous static noise to mask the video frames is shown. We propose a method of forming a masking motion.
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V. ZHELEZNYAK, Polotsk State University
д-р техн. наук, проф.
References
Харкевич, А.А. Борьба с помехами / А.А. Харкевич. – 2-е изд., испр. – М.: Наука; Гл. ред. физмат. лит., 1965. – 275 с.
Денисенок, А.Н. Статистическая теория радиотехнических систем / А.Н. Денисенок. – М.: АРИ, 2007. – 200 с.
Помехоустойчивость и эффективность систем передачи информации / А.Г. Зюко [и др.]; под ред. А.Г. Зюко. – М.: Радио и связь, 1985. – 272 с.
Железняк, В.К. Защита информации от утечки по техническим каналам: учеб пособие / В.К. Железняк. – СПб.: ГУАП, 2006. – 155 с.
«Гном-3» – генератор шума, стационарный [Электронный ресурс].
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