Power generation system The fuel cost functions in rupees/hour for two 600 MW thermal power plants are given by Plant 1 : C₁ = 350 + 6P₁ +0.004P² Plant 2 C₂ = 450+ aP2 +0.003P2/2 where P₁ and P₂ are power generated by plant 1 and plant 2, respectively, in MW and a is constant. The incremental cost of power (A) is 8 rupees per MWh. The two thermal power plants together meet a total power demand of 550 MW. The optimal generation of plant 1 and plant 2 in MW, respectively, are

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.16P: A single-phase, 120V(rms),60Hz source supplies power to a series R-L circuit consisting of R=10 and...
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Power generation system
The fuel cost functions in rupees/hour for two 600
MW thermal power plants are given by
Plant 1 : C₁ = 350 +6P₁ +0.004P²
Plant 2 C₂ = 450+ aP₂ +0.003P²
:
1
2
where P₁ and P₂ are power generated by plant 1
and plant 2, respectively, in MW and a is constant.
The incremental cost of power (A) is 8 rupees per
MWh. The two thermal power plants together
meet a total power demand of 550 MW. The
optimal generation of plant 1 and plant 2 in MW,
respectively, are
Transcribed Image Text:Power generation system The fuel cost functions in rupees/hour for two 600 MW thermal power plants are given by Plant 1 : C₁ = 350 +6P₁ +0.004P² Plant 2 C₂ = 450+ aP₂ +0.003P² : 1 2 where P₁ and P₂ are power generated by plant 1 and plant 2, respectively, in MW and a is constant. The incremental cost of power (A) is 8 rupees per MWh. The two thermal power plants together meet a total power demand of 550 MW. The optimal generation of plant 1 and plant 2 in MW, respectively, are
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