1
GATE EE 2011
MCQ (Single Correct Answer)
+1
-0.3
For enhancing the power transmission in along $$EHV$$ transmission line, the most preferred is to connect a
A
Series inductive compensator in the line
B
Shunt inductive compensator at the receiving end
C
Series capacitive compensator in the line
D
Shunt capacitive compensator at the sending end
2
GATE EE 2011
MCQ (Single Correct Answer)
+2
-0.6
A lossy capacitor $${C_x}$$, rated for operation at $$5$$ $$kV,$$ $$50$$ $$Hz$$ is represented by an equivalent circuit with an ideal capacitor $${C_p}$$ in parallel with a resistor $${R_p}$$. The value $${C_p}$$ is found to be $$0.102$$ $$\mu F$$ and the value of $${R_p}$$ $$=$$ $$1.25$$ $$M\Omega .$$ Then the power loss and $$tan\delta $$ of the lossy capacitor operating at the rated voltage, respectively, are
A
$$10$$ $$W$$ and $$0.0002$$
B
$$10$$ $$W$$ and $$0.0025$$
C
$$20$$ $$W$$ and $$0.025$$
D
$$20$$ $$W$$ and $$0.04$$
3
GATE EE 2011
MCQ (Single Correct Answer)
+2
-0.6
A load center of 120 MW derives power from two power stations connected by 220 kV transmission lines of 25 km and 75 km as shown in the figure below. The three generators G1,G2 and G3 are of 100 MW capacity each and have identical fuel cost characteristics. The minimum loss generation schedule for supplying the 120 MW load is GATE EE 2011 Power System Analysis - Power Generation Cost Question 9 English
A
$$P1 = 80\,MW + $$ losses
$$P2 = 20\,MW$$
$$P3 = 20\,MW + $$ losses
B
$$P1 = 60\,MW $$
$$P2 = 30\,MW$$ $$+$$ losses
$$P3 = 30\,MW $$
C
$$P1 = 40\,MW $$
$$P2 = 40\,MW$$
$$P3 = 40\,MW + $$ losses
D
$$P1 = 30\,MW + $$ losses
$$P2 = 45\,MW$$
$$P3 = 45\,MW $$
4
GATE EE 2011
MCQ (Single Correct Answer)
+1
-0.3
A negative sequence relay is commonly used to protect
A
An alternator
B
A transformer
C
A transmission line
D
A bus bar
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