Two synchronous machines are connected as shown in Figure 1. All values in the diagram are in per unit on a common system base. If the inputs and outputs to the two machines are represented by Pu, Pu Pa,and P2u respectively, derive expressions for input and output power for the equivalent machine. If H₂ = 4.5 MJ/MVA and H₂ = 6.0 MJ /MV A, calculate the inertia constant, input power, and the maximum power of the equivalent machine. Assume P₁ = 1.25 pu, P₂ = 1.1 pu. Write the swing equation of the equivalent machine.

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Two synchronous machines are connected as shown in Figure 1. All values in the diagram are in per unit on a common system base. If the inputs and outputs to the two machines are represented by ?1? , ?1? , ?2? ,and ?2? respectively, derive expressions for input and output power for the equivalent machine. If ?1 = 4.5 ??/??? and ?2 = 6.0 ??/???, calculate the inertia constant, input power, and the maximum power of the equivalent machine. Assume ?1? = 1.25 ?? , ?2? = 1.1 ??. Write the swing equation of the equivalent machine.
Two synchronous machines are connected as shown in Figure 1. All values in the diagram are in
per unit on a common system base. If the inputs and outputs to the two machines are represented
by P₁, P₁ P₂, and P2, respectively, derive expressions for input and output power for the
equivalent machine. If H₂ = 4.5 MJ/MV A and H₂ = 6.0 MJ/MVA, calculate the inertia constant,
input power, and the maximum power of the equivalent machine. Assume P₁ = 1.25 pu,
P₂ = 1.1 pu. Write the swing equation of the equivalent machine.
1
x-10.15
Hmmm
V-1.05 pu
E = 1.246,
j0.40
x-10.15 -1.1528₂
mm H₂
V=1.0 pu
Figure 1.
Transcribed Image Text:Two synchronous machines are connected as shown in Figure 1. All values in the diagram are in per unit on a common system base. If the inputs and outputs to the two machines are represented by P₁, P₁ P₂, and P2, respectively, derive expressions for input and output power for the equivalent machine. If H₂ = 4.5 MJ/MV A and H₂ = 6.0 MJ/MVA, calculate the inertia constant, input power, and the maximum power of the equivalent machine. Assume P₁ = 1.25 pu, P₂ = 1.1 pu. Write the swing equation of the equivalent machine. 1 x-10.15 Hmmm V-1.05 pu E = 1.246, j0.40 x-10.15 -1.1528₂ mm H₂ V=1.0 pu Figure 1.
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