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Digital Signal Processing and Applications Questions

  Write short notes on :(a) Fetal ECG monitoring(b) DSP processors(c) Chirp-2 Algorithm.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  What are the conditions to be satisfied by LTZ system?
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Prove the following properties of DFT with example : (i) Periodically property (ii) Convolution property
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Determine whether following signals are periodic (i) cos (0.3 pn + p/6) (ii) x(n) = sin (0.01 pn)
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  What are the conditions to be satisfied by LT1 system.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Write short notes on : (a) Application of DSP in Telecommunication(b) DSP processor(c) Effect of finite word length(d) Chirp z-algorithm
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Using DIF-FFT find DFT of the following sequence - x(n) = {1, 3, -2, 4, 1, 4, -2, 3}
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  State whether each of the following statement is true or false. Justify your answer in 4 or 5 sentences.(a) Linear phase filters are always IIR.(b) For a causal system | h(n) | tends to zero, as n tends to infinity, the system is stable.(c) A stable filter is always causal.(d) A stable, causal FIR filter has its poles lying any where inside the unit circle in the z-plane.(e) IIR filter has always recursive realization.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Write short notes on : (a) Fast convolution method(b) DSP processor TMS320C40(c) Goertzel algorithm.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Show that the zeros of a linear phase FIR filter occur at reciprocal location.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Find the step response of a system having difference equation Y(n) = x(n) − 0.4 y(n − 1) + 0.05 y(n − 2)
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Find the given system is linear phase or not. Prove your answer. h[n] = {1, -2, 0, 2, -1}
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Derive the relationship between z-transform, DTFT and DFT.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  State and prove the Parservals Energy relation.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Write the relationship of DFT and z - transform.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  What is discrete Hilbert transform ? Why it is used ?
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Write short note on(i) Fetal ECG monitoring (ii) DSP processor - TMS 320 C5X.(iii) Hillbert transforms.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Check whether the following systems are (i) static or dynamic (ii) linear or nonlinear(iii) shift variant or shift invariant (iv)causal or non causal.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Prove the following properties of DFT with example.(i) periodicity property (ii) convolution property
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  The impulse response of a LTI system h (n) = {1, 1/2}. Find the response of the system when input x(n) = {1, 2, 3}By (i) fold, shift multiply and sum concept.(ii) Tabulation technique.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Write a short note on Chirp Algorithm.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Prove the BIBO stability condition in time domain.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Explain overlap and save method of filtering, if input data sequence is long and impulse response has a fewnumber of samples.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  A causal DT system has a difference equation [4]y(n) = x(n) - 0.4 y(n - 1) - 0.25 y(n - 2)what is ROC of this system ?
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Let x(n) = {1 2 3 2 4 3 2 1} Find DFT of x(n) using DIT - FFT algorithm only.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Show pole-zero locations of the normalized Fourth order Butterworth IIR filter.
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  An FIR LTI system has an impulse response h(n) which is real valued, even and has finite duration of(2N + 1). Show that if z1 = yejwo is a zero of the system, then z1 = (1/r)ejwo is also zero
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Write the relationship of Discrete Fourier transform to Fourier transforms and z transform
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  What is Discrete Hilbert Transform ? Why it is used ?
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

  Design and realize a low pass filter using the bilinear transformation method to satisfy the following characteristics. (i) monotonic stop band and pass band(ii) – 3dB cut off frequency of 0.5p rad(iii) stop band attenuation of 15dB at 0.75p rad
(class: BE/BTech - Common Subjects )    Digital Signal Processing & Applications

    

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