Title :
Modeling of Leaked Digital Video Signal and Information Recovery Rate as a Function of SNR
Author :
Tae-Lim Song ; Yi-Ru Jeong ; Jong-Gwan Yook
Author_Institution :
Dept. of Electr. & Electron., Yonsei Univ., Seoul, South Korea
Abstract :
Substantial information leakage at PC monitors and TV systems arises in the form of unintentional emissions of high-speed digital video signals, such as DVI/HDMI. The information recovery rate from the emanated video signal varies depending on the SNR of the receiver system, which is placed a certain distance away. In this study, a situation in which the signal from a digital video system is intercepted is modeled using full-wave electromagnetic and circuit simulations. For a quantitative evaluation of the eavesdropping threat of display systems and the effect of its countermeasure, the readability of characters on a hypothetical screen as a function of the BER of the recovery signals is presented. It is clear that a decrease of the SNR of the received signal causes a deterioration of the digital video signal-recovery rate and consequently degrades the legibility of the characters on the intercepted screen. It is expected that these techniques can be useful for measurements and analyses of the effects of countermeasures, such as noise jamming or signal modulation, to prevent interceptions of digital video information.
Keywords :
high definition video; video signal processing; BER; DVI/HDMI; PC monitors; SNR function; TV systems; circuit simulations; digital video information interception; digital video system; display systems; eavesdropping threat; full wave electromagnetic model; high definition multimedia interface; hypothetical screen; information leakage; information recovery rate; intercepted screen; leaked digital video signal modeling; receiver system; recovery signals; unintentional emissions; Broadband antennas; Integrated circuit modeling; Receiving antennas; Signal to noise ratio; Transmission line antennas; Common-mode noise; S-parameters; differential signaling; digital video interface (DVI); eavesdrop; emanation; high-definition multimedia interface (HDMI); leakage model; low-voltage differential signaling (LVDS); printed circuit board (PCB); pseudorandom binary sequence (PRBS); signal integrity; signal-to-noise ratio (SNR); simultaneous switching noise; video graphic array (VGA);
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2014.2372039