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(24) EEC 602 DIGITAL SIGNAL PROCESSING 3 1 0 Unit Topic Chapter/ Section Proposed number of Lectures I Realization of Digital Systems: Introduction, direct form realization of IIR systems, cascade realization of an IIR systems, parallel form realization of an IIR systems, Ladder structures: continued fraction expansion of H(z), example of continued fraction, realization of a ladder structure, example of a ladder realization. 4.1, 4.5, 4.6, 4.7, 4.8 8 II Design of Infinite Impulse Response Digital Filters: Introduction to Filters, Impulse Invariant Transformation, Bi-Linear Transformation, All- Pole Analog Filters: Butterworth and Chebyshev, Design of Digital Butterworth and Chebyshev Filters 5.2-5.6 8 III Finite Impulse Response Filter Design: Windowing and the Rectangular Window, Other Commonly Used Windows, Examples of Filter Designs Using Windows ,The Kaiser Window 6.2-6.5 8 IV Discrete Fourier Transforms: Definitions, Properties of the DFT, Circular Convolution, Linear Convolution 7.1-7.4 8 V Fast Fourier Transform Algorithms: Introduction, Decimation –In Time(DIT) Algorithm, Computational Efficiency, Decimation in Frequency(DIF) Algorithm 8.1-8.4 8 Text Books: Johnny R. Johnson, “Digital Signal Processing”, PHI Learning Pvt Ltd., 2009. Reference Books: 1. John G Prokias, Dimitris G Manolakis, “Digital Signal Processing”, Pearson Education. 2. Oppenheim & Schafer, “ Digital Signal Processing” PHI

Eec 602 Uptu Syllabus

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Page 1: Eec 602 Uptu Syllabus

(24)  

EEC 602 DIGITAL SIGNAL PROCESSING 3 1 0

Unit Topic Chapter/ Section Proposed number of Lectures

I Realization of Digital Systems: Introduction, direct form realization of IIR systems, cascade realization of an IIR systems, parallel form realization of an IIR systems, Ladder structures: continued fraction expansion of H(z), example of continued fraction, realization of a ladder structure, example of a ladder realization.

4.1, 4.5, 4.6, 4.7, 4.8

8

II Design of Infinite Impulse Response Digital Filters: Introduction to Filters, Impulse Invariant Transformation, Bi-Linear Transformation, All-Pole Analog Filters: Butterworth and Chebyshev, Design of Digital Butterworth and Chebyshev Filters

5.2-5.6 8

III Finite Impulse Response Filter Design: Windowing and the Rectangular Window, Other Commonly Used Windows, Examples of Filter Designs Using Windows ,The Kaiser Window

6.2-6.5 8

IV Discrete Fourier Transforms: Definitions, Properties of the DFT, Circular Convolution, Linear Convolution

7.1-7.4 8

V Fast Fourier Transform Algorithms: Introduction, Decimation –In Time(DIT) Algorithm, Computational Efficiency, Decimation in Frequency(DIF) Algorithm

8.1-8.4 8

Text Books: Johnny R. Johnson, “Digital Signal Processing”, PHI Learning Pvt Ltd., 2009. Reference Books:

1. John G Prokias, Dimitris G Manolakis, “Digital Signal Processing”, Pearson Education. 2. Oppenheim & Schafer, “ Digital Signal Processing” PHI