Title :
Front-end signal to noise ratio estimation for DVBT fixed reception in flat-fading channel
Author :
Gafer, A.Y. ; Elsadig, S. ; Varun, J.
Author_Institution :
Dept. of Electr. & Electron. Eng., Univ. Teknol. Petronas, Tronoh, Malaysia
Abstract :
Signal to Noise Ratio (SNR) is a communication link quality evaluation indicator. The Digital Video Broadcasting-Terrestrial (DVB-T) is a European, pilot symbol assisted (PSA), wireless standard for broadcasting digital TV content. The DVB-T receiver is faced by the wireless environment challenges that lead to fluctuation in the received SNR level. In this paper we focus on estimating the DVB-T received signal´s SNR for flat-fading channel scenario. We use the auto-correlation function (ACF) to estimate the total received signal plus noise power. The received signal-only power is estimated by cross-correlating the received signal with a locally generated version of the pilots. The algorithm is expressed in time domain (Pre-FFT), i.e. receiver front-end. The results of the proposed algorithm show that the algorithm can successfully work for a relatively wide range of SNRs. We use the Mean Square Error as statistical standard for measuring the deviation.
Keywords :
correlation methods; digital video broadcasting; fading channels; mean square error methods; television receivers; DVB-T receiver; DVBT; autocorrelation function; digital TV content broadcasting; digital video broadcasting-terrestrial; fixed reception; flat fading channel scenario; front end signal to noise ratio estimation; mean square error method; pilot symbol assisted wireless standard; received signal plus noise power; receiver frontend; Channel estimation; Correlation; Digital video broadcasting; Estimation; OFDM; Signal to noise ratio; DVB-T; Flat-fading; OFDM;
Conference_Titel :
Intelligent and Advanced Systems (ICIAS), 2012 4th International Conference on
Conference_Location :
Kuala Lumpur
Print_ISBN :
978-1-4577-1968-4
DOI :
10.1109/ICIAS.2012.6306205