Recording
· The analogue signal is transmitted from the input device to an analogue-to-digital converter (ADC).
· The ADC converts this signal by repeatedly measuring the momentary level of the analogue (audio) wave and then assigning a binary number with a given quantity of bits (word length) to each measuring point.
· The frequency at which the ADC measures the level of the analogue wave is called the sample rate or sampling rate.
· A digital audio sample with a given word length represents the audio level at one moment.
· The longer the word length the more exact is the representation of the original audio wave.
· The higher the sampling rate the higher the upper cut-off frequency of the digitised audio signal.
· The ADC outputs a sequence of samples that make up a continuous stream of 0s and 1s.
· These numbers are stored onto recording media such as magnetic tape, hard drive, optical drive or solid state memory.
Playback
· The sequence of numbers is transmitted from storage into a digital-to-analogue converter (DAC), which converts the numbers back to an analogue signal by sticking together the level information stored in each digital sample, thus rebuilding the original analogue wave form.
·This signal is amplified and transmitted to the loudspeakers.
From above, we can see that there are two main factors affecting the quality of a digital recording:
Word Size
The number of bits used to represent a single audio wave (the word size) directly affects the achievable noise level of a signal recorded with added dither, or the distortion of an undithered signal. Increasing a sample's word length by one bit doubles its possible values, likewise increasing the potential accuracy of each sample and the fidelity of the recording to the original. 24-bit recording is generally considered a current practical limit as this word length allows a signal-to-noise ratio exceeding that of most analogue circuitry, which by necessity must be used in at least two points in the recording/playback chain
Sample rate
The sample rate is even more important a consideration than the word size. If the sample rate is too low, the sampled signal cannot be reconstructed to the original sound signal. Hence the output will be different from the input. The process of under sampling results in aliasing whereby the high frequency components of the sound wave are represented as being lower than they should be. This causes the output wave shape to be severely altered.
To overcome aliasing, the sound signal (or other signal) must be sampled at a rate at least twice that of the highest frequency component in the signal. This is known as the Nyquist-Shannon sampling theorem.
For recording music-quality audio the following PCM sampling rates are the most common:
44.1 kHz 48 kHz 88.2 kHz 96 kHz 176.4 kHz 192 kHz
When making a recording, experienced audio recording and mastering engineers will normally do a master recording at a higher sampling rate (i.e. 88.2, 96, 176.4 or 192 kHz) and then do any editing or mixing at that same higher frequency. High resolution PCM recordings have been released on DVD-Audio (also known as DVD-A), DAD (Digital Audio Disc—which utilises the stereo PCM audio tracks of a regular DVD), DualDisc (utilising the DVD-Audio layer), or Blu-ray (Profile 3.0 is the Blu-ray audio standard, although as of mid-2009 it is unclear whether this will ever really be used as an audio-only format). In addition it is nowadays also possible and common to release a high resolution recording directly as either an uncompressed WAV or lossless compressed FLAC file[8] (usually at 24 bits) without down-converting it .
However if a CD (the CD Red Book standard is 44.1 kHz 16 bit) is to be made from a recording, then doing the initial recording using a sampling rate of 44.1 kHz is obviously one approach. Another approach that is usually preferred is to use a higher sample rate and then downsample to the final format's sample rate. This is usually done as part of the mastering process. One advantage to the latter approach is that way a high resolution recording can be released, as well as a CD and/or lossy compressed file such as mp3—all from the same master recording.- Wikipedia
- Michael Palmer














