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Electrical Power Systems

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426 <strong>Electrical</strong> <strong>Power</strong> <strong>Systems</strong><br />

rom equation (16.50),<br />

DP g (l) = 850 – (30 + 30 + 27.77)<br />

\ DP g (l) = 762.23 MW<br />

rom eqn.(16.52),<br />

Dl (1) =<br />

762. 23<br />

1 1 1<br />

+ +<br />

2´ 015 . 2´ 010 . 2´ 018 .<br />

\ Dl (1) = 68.6007<br />

Therefore, for 2nd iteration<br />

l (2) = l (1) + Dl (1) = 50 + 68.6007<br />

Now<br />

\ l (2) = 118.6007.<br />

\ (2) 118. 6007 - 41<br />

Pg1 = = 258.669 MW<br />

2 ´ 015 .<br />

(2) 118. 6007 - 44<br />

= = 373.0035 MW<br />

2 ´ 010 .<br />

P g2<br />

(2) 118. 6007 - 40<br />

= = 218.335 MW.<br />

2 ´ 018 .<br />

P g3<br />

\ DP g (2) = 850 – (258.669 + 373.0035 + 218.335)<br />

\ DP g (2) = – 0.0075,<br />

DP g (2) = 0.0075 is very very small and hence solution has converged.<br />

Therefore optimal solution is<br />

P g1 = 258.669 MW<br />

P g2 = 373.0035 MW<br />

P g3 = 218.335 MW<br />

l = 118.6007 Rs/MWhr<br />

C T = C 1 + C 2 + C 3<br />

\ C T = [500 + 41 × 258.669 + 0.15 × (258.669) 2<br />

\ C T = 69481 Rs/hr.<br />

+ 400 + 44 × 373.0035 + 0.10 × (373.0035) 2<br />

+ 300 + 40 × 218.335 + 0.18 × (218.335) 2 ] Rs/hr

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