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R13
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Code: 13A04803
B.Tech IV Year II Semester (R13) Regular & Supplementary Examinations April 2018
ADVANCED DIGITAL SIGNAL PROCESSING MULTIRATE & WAVELET
(Electronics and Communication Engineering)
Time: 3 hours
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Max. Marks: 70
PART - A
(Compulsory Question)
Answer the following: (10 X 02 = 20 Marks)
- (a) Mention two applications which require time frequency analysis.
- (b) Define dilation and contraction.
- (c) What are vanishing moments?
- (d) Mention two properties of Daubechies wavelets.
- (e) State the condition of admissibility of CWT.
- (f) Define the Gabor wavelet and give its advantages over Fourier transform.
- (g) What is a wavelet packet?
- (h) What is the use of the lifting method?
- (i) Define a fractal.
- (j) Mention how wavelets can be used for transient analysis.
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PART - B
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(Answer all five units, 5 X 10 = 50 Marks)
UNIT - I
- Describe the use of wavelets for image compression.
OR
- Explain the principle of multi-resolution analysis using wavelets.
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UNIT - II
- Describe the two band filter bank design for dyadic wavelets.
OR
- (a) Explain the properties of biorthogonal wavelets.
(b) Explain the JPEG 2000 compression standard.
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UNIT - III
- Describe the uncertainty principle and its implications.
OR
- Define the continuous wavelet transform and explain its application in wide band correlation processing.
UNIT - IV
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- (a) Define discrete WT and explain the discretization stages from CWT to DWT.
(b) Explain how the spline function can be used to construct wavelets.OR
- Describe variants of the wavelet transforms and its implementation structures.
UNIT - V
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- Describe the use of wavelets in analyzing one dimensional biomedical signal.
OR
- Explore how the wavelet transforms can be applied for wavelet based modulation and demodulation.
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