TI systems has the block diagram as shown in Figure 1. Signal Flow Graph for the system. G4(S) Y(S (Σ G₁(s) G₂(s) G3(s) H₁(s) H₂(s) Figure 1. Block Diagram Representation for a LTI system son gain formula, prove the Transfer Function of the system can be described b G₁ G₂ G3 + G₁G4 T(s) = 1-G.H. +G.G-H. (Σ)
TI systems has the block diagram as shown in Figure 1. Signal Flow Graph for the system. G4(S) Y(S (Σ G₁(s) G₂(s) G3(s) H₁(s) H₂(s) Figure 1. Block Diagram Representation for a LTI system son gain formula, prove the Transfer Function of the system can be described b G₁ G₂ G3 + G₁G4 T(s) = 1-G.H. +G.G-H. (Σ)
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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PLEASE ANSWER BOTH PARTS OF PROBLEM
..

Transcribed Image Text:Question 1: A LTI systems has the block diagram as shown in Figure 1.
1. Draw the Signal Flow Graph for the system.
G4(S)
R(s)
Y(s)
(Σ) Σ
G₁(s)
G₂(s)
G3(S)
Σ
H₁(s)
H₂(s)
Figure 1. Block Diagram Representation for a LTI system
2. Using Mason gain formula, prove the Transfer Function of the system can be described by:
G₁ G₂ G3 + G₁G4
T(s)
=
1 - G₁H₁ + G₁G₂H₂
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