Draw the signal flow graph. Use Mason's rule to find C(s)/R(s). :A control system described by the following algebraic equations: X(s) = R(s)– Ġ(s}H,(s) – X;(s}Ħ5(s) X(s) = X(s) –X(5)H;(s) – X,(s) X3(s) =X,(s)G (3) X4(s) = X3(s)G2(s) X(s) = C(s) + X3(s)G3(s) X(s) = X4(s) F X<(s)G4(s)+C(s)H;(s) X(s) = T(s)H;(s)H2(s)+C(s)H3(s) C(s) = X6(s)G5(s). Draw the signal flow graph. Use Mason's rule to find C(s)/R(s) %3D %3D %3D %3D SPE

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: A control system described by the following algebraic equations:
X(s) = R(s)- Ġ(s}H,(s) – X;(s}HĦ5(s)
X(s) = X(s) –X(s)H;(s)- X,(s)
X(s) = X,(s)G (s)
X4(s) = X3(s)G2(s)
X(s) = C(s) + X3 (s)G3(s)
X(s) = X4(s) F X{(s)G4(s)+ C(s)H;(s)
XF(s) = (s)H;(s)H2(s) + C(s)H3(s)
C(s) = X6(s)G5(s).
Draw the signal flow graph. Use Mason's rule to find C(s)/R(s)
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Transcribed Image Text:: A control system described by the following algebraic equations: X(s) = R(s)- Ġ(s}H,(s) – X;(s}HĦ5(s) X(s) = X(s) –X(s)H;(s)- X,(s) X(s) = X,(s)G (s) X4(s) = X3(s)G2(s) X(s) = C(s) + X3 (s)G3(s) X(s) = X4(s) F X{(s)G4(s)+ C(s)H;(s) XF(s) = (s)H;(s)H2(s) + C(s)H3(s) C(s) = X6(s)G5(s). Draw the signal flow graph. Use Mason's rule to find C(s)/R(s) %3D %3D %3D %3D %3D
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