FIR and IIR Filters for Sound Equalization Systems
محورهای موضوعی : Majlesi Journal of Telecommunication Devices
1 - Department of Electrical Engineering, Velayat University, Iranshahr, Iran.
کلید واژه: bilinear method, IIR Filter, audio equalizer, FIR filter, window method,
چکیده مقاله :
IIR and FIR filters are widely used in digital signal processing. The choice of one of these methods depends on the design requirements. In this paper, the two filter design methods are compared in audio equalizer system design. Audio equalization systems are used in electric guitars, pianos, and other electric instruments. It is also an integral part of audio players, audio amplifiers and sound recording systems. The design includes a six-band amplifier that can be used to modify the signal amplitude over the entire audio frequency spectral range. Digital filters were transformed from Chebyshev analog prototypes using Bilinear Transformation Procedures on IIR filters. The Window method was used to design the FIR filter with the same specifications as the IIR filter. The results show that IIR and FIR can be used to design equalizer systems. But one has advantages over the other. Filters can be designed with low order IIR methods, but the FIR requires high order filter designs. On the other hand, in the FIR filter design method, the linearity of the phase response is much better.
[1] L. Litwin, "FIR and IIR digital filters," IEEE Potentials, vol. 19, no. 4, pp. 28-31, 2000.
[2] Y. C. Lim, J. B. Evans, and B. Liu, "An efficient bit-serial FIR filter architecture," Circuits, Systems and Signal Processing, journal article vol. 14, no. 5, pp. 639-651, September 01 1995.
[3] T. Saramaki, "Design of FIR filters as a tapped cascaded interconnection of identical subfilters," IEEE Transactions on Circuits and Systems, vol. 34, no. 9, pp. 1011-1029, 1987.
[4] J. S. Pereira and A. Petraglia, "Optimum design and implementation of IIR SC filters using small-order FIR cells," IEEE Transactions on Circuits and Systems II: Analog and Digital Signal Processing, vol. 49, no. 8, pp. 529-538, 2002.
[5] D. Farden and L. Scharf, "Statistical design of nonrecursive digital filters," IEEE Transactions on Acoustics, Speech, and Signal Processing, vol. 22, no. 3, pp. 188-196, 1974.
[6] M. Faust and C. Chang, "Optimization of structural adders in fixed coefficient transposed direct form FIR filters," in 2009 IEEE International Symposium on Circuits and Systems, 2009, pp. 2185-2188.
[7] R. Sotner, J. Jerabek, S. Ozoguz, D. Kubanek, and L. Langhammer, "Electronically Controllable Audio Equalizers Based on Bilinear Immittances Utilizing CMOS Voltage Differencing Current Conveyor," in 2019 IEEE International Symposium on Circuits and Systems (ISCAS), 2019, pp. 1-5.
[8] V. Litovski, "IIR Digital Filter Synthesis Based on Bilinear Transformation of Analog Prototypes," in Electronic Filters, vol. 5961st ed. Singapor: Springer, 2019, pp. 399-432.
[9] L. Tan and J. Jiang, Digital Signal Processing Fundementals and Applications, 2nd ed. USA: Academeic Press 2013.
[10] V. K. Ingle and J. G. Proakis, Digital Signal Processing Using Matlab, 2nd ed. USA: Cengage Learning, 2012.
[11] G. Capizzi, S. Coco, G. L. Sciuto, and C. Napoli, "A New Iterative FIR Filter Design Approach Using a Gaussian Approximation," IEEE Signal Processing Letters, vol. 25, no. 11, pp. 1615-1619, 2018.
[12] A. V. Oppenheim and R. W. Schafer, Discrete-Time Signal Processing, 3rd ed. USA: Pearson, 2009.
[13] N. Srivastava and V. V. Thakare, "Design Technique of FIR Digital Filter Using Various Window Function," International Journal of Microwave Engineering and Technology, vol. 3, no. 1, 2017.