Design of Audio Parametric Equalizer Filters Directly in the Digital Domain

Проектирование параметрических эквалайзеров аудиосигнала непосредственно в цифровой области
Joshua D. Reiss
2010-11-18

complex conjugate poles and zerosdigital parametric equalizerdirect digital-domain designpole-zero placementstable minimum-phase behavior
Most design procedures for a digital parametric equalizer begin with analog design techniques, followed by applying the bilinear transform to an analog prototype. As an alternative, an approximation to the parametric equalizer is sometimes designed using pole-zero placement techniques. In this paper, we present an exact derivation of the parametric equalizer without resorting to an analog prototype. We show that there are many solutions to the parametric equalizer design constraints as usually stated, but only one of which consistently yields stable, minimum phase behavior with the upper and lower cutoff frequencies positioned around the center frequency. The conditions for complex conjugate poles and zeros are found and the resultant pole zero placements are examined.
1
An exact derivation of the digital parametric equalizer is presented that does not rely on an analog prototype or bilinear transform.
2
Resultant pole-zero placements that satisfy these conditions are examined, ensuring appropriate positioning of upper and lower cutoff frequencies relative to the center frequency.
3
The paper identifies conditions required for complex conjugate poles and zeros in digital parametric equalizer designs.
4
There exist many mathematical solutions to commonly stated parametric equalizer design constraints, but only one yields consistent stable, minimum-phase behavior with cutoffs around the center frequency.

Digital parametric equalizer filter

Exact direct-digital-domain design and pole–zero placement conditions that yield stable, minimum-phase behavior with correct upper and lower cutoff frequencies around the center frequency

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2010-11-18
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Joshua D. Reiss
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