Exam Details
Subject | advanced digital signal processing | |
Paper | ||
Exam / Course | f.y. m.tech. (civil -structural engg.) | |
Department | ||
Organization | solapur university | |
Position | ||
Exam Date | October, 2018 | |
City, State | maharashtra, solapur |
Question Paper
F.Y. M.Tech. (Electronics Engg.) (Semester (New CBCS)
Examination, 2018
ADVANCED DIGITAL SIGNAL PROCESSING
Day and Date Thursday, 6-12-2018 Max. Marks 70
Time 10.00 a.m. to 1.00 p.m.
Instructions All questions are compulsory.
Figures to right side indicates full marks.
Assume suitable data if required.
SECTION I
1. Draw the block diagram of forward linear prediction. Derive the equation for
coefficient of linear predictor. 6
Explain the Levinson Durbin algorithm for computation of LPC's. 6
2. Explain the process of decimation by a factor Draw the spectrum for
each stage. 6
Explain with block diagram applications in Subband Coding. 6
3. Explain Design Techniques of Linear Phase FIR Filter. 6
Explain the Cascaded Lattice Structures for IIR System. 5
SECTION II
4. Derive the equation for energy density spectrum which is obtained from the
Fourier Transform of autocorrelation of the sequence 6
Derive the equation of power density spectrum estimation called as
'periodogram'. 6
5. Explain application of Adaptive Filters as Adaptive Channel Equalization. 6
Explain LMS Algorithm in detail. 6
6. What is Wavelet transform Discuss two properties of Wavelet Transform. 6
Explain with block diagram application of DSP in radar communication. 5
Examination, 2018
ADVANCED DIGITAL SIGNAL PROCESSING
Day and Date Thursday, 6-12-2018 Max. Marks 70
Time 10.00 a.m. to 1.00 p.m.
Instructions All questions are compulsory.
Figures to right side indicates full marks.
Assume suitable data if required.
SECTION I
1. Draw the block diagram of forward linear prediction. Derive the equation for
coefficient of linear predictor. 6
Explain the Levinson Durbin algorithm for computation of LPC's. 6
2. Explain the process of decimation by a factor Draw the spectrum for
each stage. 6
Explain with block diagram applications in Subband Coding. 6
3. Explain Design Techniques of Linear Phase FIR Filter. 6
Explain the Cascaded Lattice Structures for IIR System. 5
SECTION II
4. Derive the equation for energy density spectrum which is obtained from the
Fourier Transform of autocorrelation of the sequence 6
Derive the equation of power density spectrum estimation called as
'periodogram'. 6
5. Explain application of Adaptive Filters as Adaptive Channel Equalization. 6
Explain LMS Algorithm in detail. 6
6. What is Wavelet transform Discuss two properties of Wavelet Transform. 6
Explain with block diagram application of DSP in radar communication. 5
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- advanced network system
- advanced solid mechanics (new)
- advanced structural analysis
- advanced vibrations and acoustics
- antena design and applications
- applied algorithms
- computational techniques in design enginering
- computer aided design (elective – i)
- data mining
- digital design and verification
- elective – 1 : advanced embedded system
- elective – i : analog and digital cmos vlsi design
- elective – i : biomedical signal processing
- elective – i : computer vision
- elective – i : image and video procesing
- elective – i : mechanical system design
- elective – i : natural language procesing
- elective – i : neural networks and fuzzy control systems
- elective – i : soft computing
- elective – i : wireles sensor networks
- industrial instrumentation
- machine learning
- object oriented software enginering (elective – i)
- reliability enginering (elective – i)
- research methodology and ipr
- soft computing methods
- structural dynamics
- theory of computation (new)
- voice and data networks