Question 3 Consider a causal LTI system with impulse response h[n] and system function H(z) , D=1 (1 - ((D mod 2) + 1)z−¹)(1 − 4z−¹) z(1 – 1⁄/z-¹) where D is the 4th digit (from left to right) of your student ID, and X modulo Y is abbreviated as X mod Y and returns remainder of the Euclidean division of X by Y, where X is dividend and Y is the divisor e.g., 5 mod 2 = 1,9 mod 5 = 4, etc. (a) Draw a direct form II flow graph for the system. (b) Draw the transposed form of the flow graph in part (a).
Question 3 Consider a causal LTI system with impulse response h[n] and system function H(z) , D=1 (1 - ((D mod 2) + 1)z−¹)(1 − 4z−¹) z(1 – 1⁄/z-¹) where D is the 4th digit (from left to right) of your student ID, and X modulo Y is abbreviated as X mod Y and returns remainder of the Euclidean division of X by Y, where X is dividend and Y is the divisor e.g., 5 mod 2 = 1,9 mod 5 = 4, etc. (a) Draw a direct form II flow graph for the system. (b) Draw the transposed form of the flow graph in part (a).
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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