Given dF₁/dP₁= 20+ 0.4P₁, dF₂/dP₂ = 30 +0.4P₂, and Poss = 0.0004P2 +0.0006P² Assume the load = 1000 MW. Using the coordination equation method, and starting with Pº=500MW, P = 500MW Perform one iteration to get: Select one: O a. None of these b. P₁ = 775MW, P₂ = 475MW, andλ = 550$/MWh O c. P₁ = 675MW, P₂ = 575MW, andλ = 450$/MWh O d. P₁ = 875MW, P₂ = 375MW, andλ = 650$/MWh

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Given
dF₁/dP₁ = 20 +0.4P₁, dF₂/dP₂ = 30 +0.4P2, and Poss = 0.0004P2 + 0.0006P2²
Assume the load = 1000 MW. Using the coordination equation method, and starting with
P = 500MW, P = 500MW Perform one iteration to get:
Select one:
O a. None of these
b.
P₁ = 775MW, P₂ = 475MW, andλ = 550$/MWh
O c. P₁ = 675MW, P₂ = 575MW, andλ = 450$/MWh
O d. P₁ = 875MW, P₂ = 375MW, andλ = 650$/MWh
Transcribed Image Text:Given dF₁/dP₁ = 20 +0.4P₁, dF₂/dP₂ = 30 +0.4P2, and Poss = 0.0004P2 + 0.0006P2² Assume the load = 1000 MW. Using the coordination equation method, and starting with P = 500MW, P = 500MW Perform one iteration to get: Select one: O a. None of these b. P₁ = 775MW, P₂ = 475MW, andλ = 550$/MWh O c. P₁ = 675MW, P₂ = 575MW, andλ = 450$/MWh O d. P₁ = 875MW, P₂ = 375MW, andλ = 650$/MWh
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