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 Audio signal energy level detection method and apparatus

Details
Inventors: Strahm, Chris N.;
Assignee: Audio Teknology, Inc. (Portland, OR)
Primary Examiner: Ng; Jin F.
Assistant Examiner: Tong; Nina
Attorney, Agent or Firm: Kolisch Hartwell Dickinson McCormack & Heuser

An audio signal energy level detector for use with audio signal processing is described. The energy level detector includes a high-pass filter series-connected between an audio input signal and a series-connected rectifier and integrator the output of which is connectable to the control input of a variable gain device that processes the audio input signal. A characteristically -10 db/decade amplitude versus frequency slope audio input signal is high-pass filtered, rectified and smoothed to produce a constant-energy, DC gain control signal. When the audio input signal is processed in accordance with the invention by the variable gain device to produce an audio output signal suitable for dynamic, downstream processing, the tonal balance and timbre of the audio input signal are preserved. Passive and active, half-order, five-stage high-pass filters are described that provide the desired +10 db/decade amplitude versus frequency slope over the audio frequency range.

DETAILED DESCRIPTION This application relates generally to audio level detection circuits for use in audio signal processing.
More particularly, it concerns energy level detection method and apparatus that preserve the tonal balance of an audio input signal by detecting the spectral energy of the audio input signal over its dynamic frequency range and producing a gain control signal that is generally equally responsive to the high- and low-frequency components of the audio input signal.
Prior art audio level detectors ignore the negative amplitude versus frequency slope that is characteristic of audio signals, e.
g.
speech or musical program material.
Conventionally, an audio signal level detector simply rectifies an audio input signal and integrates, or smooths, the rectified output to produce a direct current (DC) gain control signal--for use by a variable gain control device--the amplitude of which is directly proportional over the audio frequency spectrum to the amplitude of the audio input signal.
Because of the characteristic nature of an audio input signal, in which lower frequencies tend to be of higher amplitude and higher frequencies tend to be of lower amplitude (in accordance with the so-called "pink noise" curve), the output of the variable gain device that processes the audio input signal is of constant amplitude, irrespective of the frequency of the audio input signal.
One problem with variable gain devices so-controlled is a resultant shift of the tonal balance and a reduction of the timbre of the audio input signal so-processed to produce a gain-controlled audio output signal.
It is a principal object of the present invention to provide an audio signal energy, rather than amplitude, level detection circuit that preserves the tonal balance and timbre of the audio signal processed by a variable gain device controlled by the level detection circuit It is also an object of the invention to provide such a circuit with a filter having a predefined, positive, amplitude versus frequency slope characteristic over the audio frequency range



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