Roll No. EEEEEEEEEEE Total No. of Pages : 02
Total No. of Questions : 09
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B.Tech.(Electronics & Electrical Engg.) (2012 to 2017)
(Sem.-6)
DIGITAL SIGNAL PROCESSING
Subject Code : BTEEE-601
M.Code : 71130
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Time : 3 Hrs. Max. Marks : 60
INSTRUCTIONS TO CANDIDATES :
- SECTION-A is COMPULSORY consisting of TEN questions carrying TWO marks each.
- SECTION-B contains FIVE questions carrying FIVE marks each and students have to attempt any FOUR questions.
- SECTION-C contains THREE questions carrying TEN marks each and students have to attempt any TWO questions.
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SECTION-A
- Write briefly :
- Discuss the characteristics of digital signal processor.
- Explain the applications of DSP.
- Discuss the time shifting property of z transform.
- What do you mean by LTI system? Explain.
- Compare the computational requirements FFT algorithms.
- Draw and explain cascade FIR structure.
- Discuss the advantages and disadvantages of Goertzel algorithm.
- List the advantages of DSP processors.
- Draw and explain in brief the magnitude characteristics of physically realizable filters.
- Explain the fixed point representation of numbers.
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SECTION-B
- Differentiate the following :
- Energy and power signals
- Periodic and aperiodic signals
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- Determine the causal signal x(n) having the z-transform X (z):% 1+z-1/(1-z-1)
- Discuss the use of DFT in linear filtering in detail.
- Determine the lattice coefficient corresponding to the FIR filter with system function H(z)=A3(z) = 1+(13/24)z-1+(5/8)z-2+(1/3)z-3
- Compare the internal architectures of ADSP and TMS series of processors.
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SECTION-C
- Explain the various advantages and disadvantages of DSP over analog processing. Also discuss various elementary discrete time-signals and manipulations of discrete time signals.
- Compute the 16-point DFT of the sequence using any of the FFT algorithm.
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n+3, 0<n<7
0, otherwise - The normalized transfer function of an analog filter is given by :
H(s)=1/(s2+v2s +1)
Obtain the transfer function, H(z), of an equivalent digital filter using the matched z-transform method. Assume a sampling frequency of 1.28 kHz and a 3dB cutoff frequency of 150 Hz.
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NOTE : Disclosure of identity by writing mobile number or making passing request on any page of Answer sheet will lead to UMC against the Student.
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This download link is referred from the post: PTU B.Tech Question Papers 2020 March (All Branches)