SNRAB = 10 log10 SNR dB (Xrms' %3D SNRAB = 10.79 + log1 Where xrms is the RMS value of the signal to be quantized x and E(x2) = xms. Practically, %3D %3D the SNR can be calculated using the following...


SNRAB = 10 log10 SNR<br>dB<br>(Xrms'<br>%3D<br>SNRAB = 10.79 + log1<br>Where xrms is the RMS value of the signal to be quantized x and E(x2) = xms. Practically,<br>%3D<br>%3D<br>the SNR can be calculated using the following foemula<br>1N-1 x2 (n)<br>EN=3 x2(n)<br>EN- e (n)<br>Zn=0<br>SNR =<br>N<br>-EN-1 e(n)<br>Zn=0<br>Nn=0<br>Example:<br>If the analog signal to be quantized is a sinusoidal waveform, that is<br>x(t) = Asin(2 x 10³nt) and if the bipolar quantizer uses m bits, determine the SNR in term<br>of m bits<br>

Extracted text: SNRAB = 10 log10 SNR dB (Xrms' %3D SNRAB = 10.79 + log1 Where xrms is the RMS value of the signal to be quantized x and E(x2) = xms. Practically, %3D %3D the SNR can be calculated using the following foemula 1N-1 x2 (n) EN=3 x2(n) EN- e (n) Zn=0 SNR = N -EN-1 e(n) Zn=0 Nn=0 Example: If the analog signal to be quantized is a sinusoidal waveform, that is x(t) = Asin(2 x 10³nt) and if the bipolar quantizer uses m bits, determine the SNR in term of m bits

Jun 11, 2022
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