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Power abs(fft): Mag or amplitude Laplace ->Pole, zero in S plane Z transform->Pole, zero in Z plane angle(fft): Phase /N: Normalize ()^1/2: Power e^-jwt = conj(e^jwt) Power = (fft())*conj(fft())/N Multiply: Upconvert Multiply Conj: Downconvert fftshift: -fs/2 0 fs/2 freqz:Horner method for given freq points. or no freq points specified. dBm = dbw+30 L: attenuation ratio at T0. T: measurement temperature. N0 (noise power spectral density) is the noise power the source will output in unit of bandwidth (one hertz). N0 = kT = –174 dBm/Hz NBW = BW*N0 = N0 + 10log(BW) N1MHz = -174+log(1M) = -114dBm Eb/N0 (the energy per bit to noise power spectral density ratio) is SNR per bit fb:the channel data rate (net bitrate), and B:the channel bandwidth In logarithmic scale (dB) Es/N0 (energy per symbol to noise power spectral density) M:bits per symbol BER =f(SNR) = f(CF) CF at the decoder at the receiver determines the actual BER. CF is affected by Noise gen, TC, RX and BW filters on the way.
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