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Helwan University
Faculty of Engineering
Department of Electronics, Communications & Computer
ELC 9421 Digital Signal Processing - Spring 2017
Sheet Seven
‫ن‬ ‫ا‬ ‫و‬ ‫ل‬ ‫ح‬ ‫ب‬ ‫ة‬ ‫س‬ ‫د‬ ‫ن‬ ‫ه‬ ‫ل‬ ‫ا‬ ‫ة‬ ‫ي‬ ‫ل‬ ‫ك‬–‫ن‬ ‫ا‬ ‫و‬ ‫ل‬ ‫ح‬ ‫ة‬ ‫ع‬ ‫م‬ ‫ا‬ ‫ج‬ Page 1 of 1
1) Design an FIR filter phase, digital filter approximating the ideal frequency
response
H(w) = {
1, |w| ≤ π/6
0, π/6 ≤ |w| ≤ π
a) Determine the coefficients of a 25-tap filter based on the window method
with a rectangular window.
b) Determine and plot the magnitude and phase response of the filter.
-------------------------------------------------------------------------------------------------------
2) Repeat problem (1) for a Band-Stop filter having the ideal response
H(w) = {
1, |w| ≤ π/6
0, π/6 ≤ |w| ≤ π/3
1, π/3 ≤ |w| ≤ π
-------------------------------------------------------------------------------------------------------
3) Consider a continuous time system with system function
𝐻(𝑠) =
𝑠 + 0.1
(𝑠 + 0.1)2 + 9
Find the digital IIR filter by means of the impulse invariance method. Find the
poles & zeros of such filter.
-------------------------------------------------------------------------------------------------------
4) convert the analog filter with system function
𝐻(𝑠) =
𝑠 + 0.1
(𝑠 + 0.1)2 + 16
Into a digital filter by means of the bilinear transformation (𝑇 = 1/2). Find the
poles and zeros of that filter. Plot |𝐻 (𝑗𝑤)|
-------------------------------------------------------------------------------------------------------
5) Compare between the transformation in problem (3) & (4). Mention the
restrictions of using the two methods.
-------------------------------------------------------------------------------------------------------
Best Wishes,
Prof. Elsayed. M. Saad
Dr. Amr E. Mohamed

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DSP 07 _ Sheet Seven

  • 1. Helwan University Faculty of Engineering Department of Electronics, Communications & Computer ELC 9421 Digital Signal Processing - Spring 2017 Sheet Seven ‫ن‬ ‫ا‬ ‫و‬ ‫ل‬ ‫ح‬ ‫ب‬ ‫ة‬ ‫س‬ ‫د‬ ‫ن‬ ‫ه‬ ‫ل‬ ‫ا‬ ‫ة‬ ‫ي‬ ‫ل‬ ‫ك‬–‫ن‬ ‫ا‬ ‫و‬ ‫ل‬ ‫ح‬ ‫ة‬ ‫ع‬ ‫م‬ ‫ا‬ ‫ج‬ Page 1 of 1 1) Design an FIR filter phase, digital filter approximating the ideal frequency response H(w) = { 1, |w| ≤ π/6 0, π/6 ≤ |w| ≤ π a) Determine the coefficients of a 25-tap filter based on the window method with a rectangular window. b) Determine and plot the magnitude and phase response of the filter. ------------------------------------------------------------------------------------------------------- 2) Repeat problem (1) for a Band-Stop filter having the ideal response H(w) = { 1, |w| ≤ π/6 0, π/6 ≤ |w| ≤ π/3 1, π/3 ≤ |w| ≤ π ------------------------------------------------------------------------------------------------------- 3) Consider a continuous time system with system function 𝐻(𝑠) = 𝑠 + 0.1 (𝑠 + 0.1)2 + 9 Find the digital IIR filter by means of the impulse invariance method. Find the poles & zeros of such filter. ------------------------------------------------------------------------------------------------------- 4) convert the analog filter with system function 𝐻(𝑠) = 𝑠 + 0.1 (𝑠 + 0.1)2 + 16 Into a digital filter by means of the bilinear transformation (𝑇 = 1/2). Find the poles and zeros of that filter. Plot |𝐻 (𝑗𝑤)| ------------------------------------------------------------------------------------------------------- 5) Compare between the transformation in problem (3) & (4). Mention the restrictions of using the two methods. ------------------------------------------------------------------------------------------------------- Best Wishes, Prof. Elsayed. M. Saad Dr. Amr E. Mohamed