An automobile is modeled as shown in Figure below. Derive the equations of motion, build the Siulink-diagram, and simulate the system for the given numerical values. F1 and F2 are to be chosen suitably to represent the road conditions. - Mass = M, mass moment of inertia JG %3D F2 2 11 m m2 C1 JG= 3443.05; k2= 26530; k2= 26530; k1= 190000; k1= 190000; m1 = 140.14; m2=87.15; M=1795; C1= 1200; c2=1100; l1=1.32; l2= 1.46;

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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An automobile is modeled as shown in Figure below. Derive the equations of motion, build
the Simulink diagram, and simudate the system for the given numerical values. F1 and F2 are
to be chosen suitably to represent the road conditions.
-Mass = M,
mass moment of inertia = JG
k2
F1
k2
X1
F2 2
11
m2
{k1
k1
JG= 3443.05;
k2= 26530; k2= 26530; k1= 190000; k1 = 190000;
m1 = 140.14; m2=87.15; M=1795;
C1= 1200; c2=1100; l1= 1.32; l2= 1.46;
||
Transcribed Image Text:An automobile is modeled as shown in Figure below. Derive the equations of motion, build the Simulink diagram, and simudate the system for the given numerical values. F1 and F2 are to be chosen suitably to represent the road conditions. -Mass = M, mass moment of inertia = JG k2 F1 k2 X1 F2 2 11 m2 {k1 k1 JG= 3443.05; k2= 26530; k2= 26530; k1= 190000; k1 = 190000; m1 = 140.14; m2=87.15; M=1795; C1= 1200; c2=1100; l1= 1.32; l2= 1.46; ||
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