On Passband and Stopband Cascaded-Integrator-Comb Improvements Using a Second Order IIR Filter

Alfonso Fernandez-Vazquez, Gordana Jovanovic Dolecek

Abstract


This paper proposes an efficient second order IIR filter which considerably improves the passband as well as the stopband of the cascaded-integrator-comb (CIC) filter. Using the polyphase decomposition of the proposed filter, all filtering can be moved to a lower rate, which is D times less than the high input rate, where D is the decimation factor. The overall phase response of the compensated CIC is approximately linear in the passband. The design parameters are the number of cascaded CIC filter N, the decimator factor D, the passband frequency wp, and a weighted parameter a.


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References


Hogenauer EB. An economical class of digital filters for decimation and interpolation. IEEE Trans Acoust, Speech, Signal Process. 1981; 29(2): 155-162.

Yeung KS, Chan SC. The design and multiplier-less realization of software radio receivers with reduced system delay. IEEE Trans Circuits Syst I. 2004; 51(12): 2444-2459.

Kim S, Lee W, Ahn S, Choi S. Design of CIC roll-off compensation filter in a W-CDMA digital IF receiver. Digital Signal processing 2006; 16(6): 846-854.

Jovanovic-Dolecek G, Mitra SK. Simple method for compensation of CIC decimation filter. Electronics Letters. 2008; 44(19): 1162-1163.

Jovanovic-Dolecek G, Mitra SK. A new two-stage sharpened comb decimator. IEEE Trans Circuits Syst I. 2005; 52(7): 1414-1420.

Laddomada M. Generalized Comb Decimator Filter for / A/D converters: Analysis and Design. IEEE Trans Circuits Syst I. 2007; 54(5): 994-1005.

Fernandez-Vazquez A, Jovanovic-Dolecek G. A General Method to Desing GCF compensation filter. IEEE Trans Circuits Syst II. 2009; 56(5): 409-413.

Fernandez-Vazquez A, Jovanovic-Dolecek G. An L1 design of {GCF} compensation filter. Signal Processing. 2011; 91: 1143-1149.

Russell AI. Efficient rational sampling rate alteration using IIR filters, IEEE Signal Proc Letters. 2000: 7(1): 7-6.

Jovanovic-Dolecek G, Multirate Systems: Design and Applications. Idea Group Publishing. 2002.

Hogenauer EB. An economical class of digital filters for decimation and interpolation. IEEE Trans Acoust, Speech, Signal Process. 1981; 29(2): 155-162.

Yeung KS, Chan SC. The design and multiplier-less realization of software radio receivers with reduced system delay. IEEE Trans Circuits Syst I. 2004; 51(12): 2444-2459.

Kim S, Lee W, Ahn S, Choi S. Design of CIC roll-off compensation filter in a W-CDMA digital IF receiver. Digital Signal processing 2006; 16(6): 846-854.

Jovanovic-Dolecek G, Mitra SK. Simple method for compensation of CIC decimation filter. Electronics Letters. 2008; 44(19): 1162-1163.

Jovanovic-Dolecek G, Mitra SK. A new two-stage sharpened comb decimator. IEEE Trans Circuits Syst I. 2005; 52(7): 1414-1420.

Laddomada M. Generalized Comb Decimator Filter for / A/D converters: Analysis and Design. IEEE Trans Circuits Syst I. 2007; 54(5): 994-1005.

Fernandez-Vazquez A, Jovanovic-Dolecek G. A General Method to Desing GCF compensation filter. IEEE Trans Circuits Syst II. 2009; 56(5): 409-413.

Fernandez-Vazquez A, Jovanovic-Dolecek G. An L1 design of {GCF} compensation filter. Signal Processing. 2011; 91: 1143-1149.

Russell AI. Efficient rational sampling rate alteration using IIR filters, IEEE Signal Proc Letters. 2000: 7(1): 7-6.

Jovanovic-Dolecek G, Multirate Systems: Design and Applications. Idea Group Publishing. 2002.




DOI: http://doi.org/10.12928/telkomnika.v10i1.760

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