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Previous year question hub

Power Systems - Electrical Engineering Previous Year Questions

Practice Power Systems - Electrical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

25Papers
18Years
145Questions
1Topics

Power Systems question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Power Systems. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 100 69%
Easy 36 24.8%
Hard 9 6.2%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 97 66.9%
Numerical Answer Type (NAT) 43 29.7%
MSQ 5 3.4%

Subject weightage

Top subjects by unique question coverage.

Electrical Engineering
145 Qs

Most asked topics

Top topics across the included previous year papers.

Power Systems
145 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Load Flow, Economic Dispatch and Compensation
50 Qs
Fault Analysis and Protection
40 Qs
Power Generation and Transmission
33 Qs
Power-system Stability
15 Qs
Voltage and Frequency Control
7 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Electrical Engineering (EE) 2025
3 Qs
Electrical Engineering (EE) 2024
6 Qs
Electrical Engineering (EE) 2023
6 Qs
Electrical Engineering (EE) 2022
6 Qs
Electrical Engineering (EE) 2021
8 Qs
Electrical Engineering (EE) 2020
5 Qs
Electrical Engineering (EE) 2019
6 Qs
Electrical Engineering (EE) 2018
7 Qs
Electrical Engineering (EE) 2017 [Session 2]
8 Qs
Electrical Engineering (EE) 2017 [Session 1]
6 Qs
Electrical Engineering (EE) 2016 [Session 2]
6 Qs
Electrical Engineering (EE) 2016 [Session 1]
5 Qs
Electrical Engineering (EE) 2014 [Session 1]
7 Qs
Electrical Engineering (EE) 2014 [Session 2]
6 Qs
Electrical Engineering (EE) 2014 [Session 3]
2 Qs
Electrical Engineering (EE) 2013 [Session 1]
4 Qs
Electrical Engineering (EE) 2013 [Session 2]
4 Qs
Electrical Engineering (EE) 2013 [Session 3]
4 Qs
Electrical Engineering (EE) 2013 [Session 4]
4 Qs
Electrical Engineering (EE) 2012
5 Qs
Electrical Engineering (EE) 2011
7 Qs
Electrical Engineering (EE) 2010
6 Qs
Electrical Engineering (EE) 2009
7 Qs
Electrical Engineering (EE) 2008
11 Qs
Electrical Engineering (EE) 2007
6 Qs

Browse by subtopics

Open a focused page built from the same verified paper data.

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
Electrical Engineering (EE) 202520253View paper
Electrical Engineering (EE) 202420246View paper
Electrical Engineering (EE) 202320236View paper
Electrical Engineering (EE) 202220226View paper
Electrical Engineering (EE) 202120218View paper
Electrical Engineering (EE) 202020205View paper
Electrical Engineering (EE) 201920196View paper
Electrical Engineering (EE) 201820187View paper
Electrical Engineering (EE) 2017 [Session 1]20176View paper
Electrical Engineering (EE) 2017 [Session 2]20178View paper
Electrical Engineering (EE) 2016 [Session 1]20165View paper
Electrical Engineering (EE) 2016 [Session 2]20166View paper
Electrical Engineering (EE) 2014 [Session 1]20147View paper
Electrical Engineering (EE) 2014 [Session 2]20146View paper
Electrical Engineering (EE) 2014 [Session 3]20142View paper
Electrical Engineering (EE) 2013 [Session 1]20134View paper
Electrical Engineering (EE) 2013 [Session 2]20134View paper
Electrical Engineering (EE) 2013 [Session 3]20134View paper
Electrical Engineering (EE) 2013 [Session 4]20134View paper
Electrical Engineering (EE) 201220125View paper
Electrical Engineering (EE) 201120117View paper
Electrical Engineering (EE) 201020106View paper
Electrical Engineering (EE) 200920097View paper
Electrical Engineering (EE) 2008200811View paper
Electrical Engineering (EE) 200720076View paper

Sample previous year questions

A varied preview from the papers represented in this selection, with every available option.

1
2007 · Electrical Engineering · Power Systems · Power Generation and Transmission
Electrical Engineering (EE) 2007

Consider a bundled conductor of an overhead line, consisting of three identical sub-conductors placed at the corners of an equilateral triangle as shown in the figure. If we neglect the charges on the other phase conductors and ground, and assume that spacing between sub-conductors is much larger than their radius, the maximum electric field intensity is experienced at

Question diagram

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2
2008 · Electrical Engineering · Power Systems · Fault Analysis and Protection
Electrical Engineering (EE) 2008
A two machine power system is shown below. Transmission line XY has positive sequence impedance of $Z_1 \, \Omega$ and zero sequence impedance of $Z_0 \, \Omega$. An 'a' phase to ground fault with zero fault impedance occurs at the centre of the transmission line. Bus voltage at X and line current from X to F for the phase 'a', are given by $V_a$ Volts and $I_a$ Amperes, respectively. Then, the impedance measured by the ground distance relay located at the terminal X of line XY will be given by
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3
2009 · Electrical Engineering · Power Systems · Power Generation and Transmission
Electrical Engineering (EE) 2009

Out of the following plant categories (i) Nuclear (ii) Run-of-river (iii) Pump Storage (iv) Diesel the base load power plants are

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4
2010 · Electrical Engineering · Power Systems · Power Generation and Transmission
Electrical Engineering (EE) 2010
Consider a step voltage of magnitude 1 pu travelling along a lossless transmission line that terminates in a reactor. The voltage magnitude across the reactor at the instant the travelling wave reaches the reactor is
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5
2011 · Electrical Engineering · Power Systems · Power Generation and Transmission
Electrical Engineering (EE) 2011

A nuclear power station of 500 MW capacity is located at 300 km away from a load center. Select the most suitable power evacuation transmission configuration among the following options

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6
2012 · Electrical Engineering · Power Systems · Load Flow, Economic Dispatch and Compensation
Electrical Engineering (EE) 2012
The bus admittance matrix of a three-bus three-line system is \[Y = j\begin{bmatrix}-13 & 10 & 5 \\ 10 & -18 & 10 \\ 5 & 10 & -13\end{bmatrix}\] If each transmission line between the two buses is represented by an equivalent \(\pi\)-network, the magnitude of the shunt susceptance of the line connecting bus 1 and 2 is
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