A Marx generator is used to generate impulse voltages. If each stage capacitor is charged to a voltage V0 and the generator has n stages, the theoretical maximum output voltage is:
Answer: C
In a Marx generator, n capacitors are charged in parallel (each to V0) and then switched in series during discharge. The theoretical maximum output voltage is n⋅V0. In practice, the actual output is slightly less due to stray capacitances and resistive losses, but n⋅V0 is the ideal value.
Q.322Medium
The standard lightning impulse voltage waveform used in high voltage testing is designated as:
Answer: A
According to IEC 60060-1, the standard lightning impulse waveform has a front time of 1.2μs and a time to half-value of 50μs, denoted as 1.2/50μs. The 8/20μs waveform is used for surge current testing, and 250/2500μs is the standard switching impulse.
Q.323Medium
In the Schering bridge used for measurement of capacitance and dielectric loss, the loss tangent tanδ at balance is given by (where R4 is a variable resistor and C4 is a standard capacitor in the bridge arm, and ω is the angular frequency):
Answer: A
At balance in the Schering bridge, the loss tangent (dissipation factor) of the test capacitor is given by tanδ=ωR4C4, where ω=2πf is the angular frequency, R4 is the variable resistance, and C4 is the capacitance in the bridge arm. This relationship allows direct measurement of dielectric loss.
Q.324Medium
The phenomenon of corona discharge on a high-voltage transmission line first occurs when the electric field at the conductor surface exceeds the critical value. For a single cylindrical conductor of radius r in air, at which condition does corona onset first occur?
Answer: B
Corona onset occurs when the electric field at the surface of the conductor equals the critical ionization field of surrounding air, approximately 30kV/cm (or 3MV/m) at standard atmospheric conditions (1 atm, 25°C). This is the point at which air molecules begin to ionize, causing partial discharge (corona). Temperature of the conductor or insulator rating are not the governing criteria.
Q.325Medium
An electrostatic voltmeter is preferred over other instruments for high-voltage measurements primarily because:
Answer: B
An electrostatic voltmeter operates on the principle of electrostatic attraction between charged plates. Its input impedance is extremely high (essentially capacitive only), so it draws negligible current from the high-voltage source. This eliminates loading errors, which is critical when measuring high voltages where even small currents can disturb the source. It cannot practically measure up to 1 MV directly and is less sensitive at low voltages.
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Q.326Medium
In a resistive voltage divider used for impulse voltage measurement, the ratio n of the divider is defined as n=(R1+R2)/R2. If R1=9kΩ and R2=1k\Omega, and the measured output voltage across R2 is 10kV, the actual high voltage is:
Answer: B
The divider ratio is n=(R1+R2)/R2=(9000+1000)/1000=10. The actual high voltage is VHV=n×Vout=10×10kV=100kV. This principle of resistive voltage division is fundamental in high voltage measurement systems.
Q.327Medium
Townsend's second ionization coefficient γ (gamma) in gas discharge theory represents:
Answer: B
Townsend's second ionization coefficient γ represents the number of secondary electrons emitted from the cathode surface per positive ion (or photon/metastable) bombarding it. Townsend's first coefficient α gives the number of ionizing collisions per unit path length by one electron. Together, α and γ determine the condition for self-sustained discharge: γ(eαd−1)=1.
Q.328Medium
A sphere gap is commonly used for measurement and calibration of high voltages because:
Answer: B
Sphere gaps are used as a standard measuring device in high voltage laboratories because the electric field between two equal spheres is nearly uniform (for small gap-to-diameter ratios), and the sparkover voltage is a well-defined, reproducible value that depends on sphere diameter and gap spacing. Standard tables (IEC 60052) provide sparkover voltages for different sphere sizes and gaps under specified atmospheric conditions, allowing accurate voltage measurement.
Q.329Medium
The dielectric strength of transformer oil is tested using a standard test cell. If the electrode gap is 2.5 mm and the breakdown voltage is 50 kV (rms), what is the dielectric strength of the oil?
This is the standard definition of dielectric strength — the electric field intensity at which breakdown occurs.
Q.330Medium
In a cable with inner conductor radius r1=1 cm and outer sheath radius r2=4 cm, the maximum electric field Emax for an applied voltage V is given by:
Answer: A
For a coaxial cylindrical geometry, the electric field varies as E(r)=rln(r2/r1)V. The maximum field occurs at r=r1 (inner conductor surface):
Emax=r1ln(r2/r1)V
Numerically, ln(4/1)=ln4≈1.386, so the field is highest at the inner conductor.
Q.331Medium
The optimum radius ratio r2/r1 for a single-core coaxial cable that minimizes the maximum electric stress for a given outer radius r2 is:
Answer: B
To minimize Emax=r1ln(r2/r1)V for fixed V and r2, we differentiate with respect to r1 and set to zero. This yields the condition ln(r2/r1)=1, i.e.,
r1r2=e≈2.718
This is the well-known optimum ratio for coaxial cable insulation design.
Q.332Medium
In a standard lightning impulse test, the peak voltage of a 1.2/50μs waveform is 1000 kV. The voltage at 50μs (tail time to half-peak) is approximately:
Answer: C
By definition of the standard impulse waveform 1.2/50μs: the front time is 1.2μs (time to peak) and the tail time is 50μs, which is the time from virtual origin to the point where the voltage decays to
2Peak Value=21000=500 kV
The 50μs parameter is specifically defined as the time to half the peak value on the tail.
Q.333Medium
Which of the following correctly expresses the Streamer criterion for spark breakdown in a gas? (α is Townsend's first ionization coefficient and d is the gap length)
Answer: B
The Streamer (Kanal) criterion states that an electron avalanche transforms into a streamer when the number of ion pairs in the avalanche head reaches a critical value of approximately 108. This requires:
eαd≈108⟹αd≈ln(108)≈18 to 20
Option C describes the Townsend (self-sustaining discharge) criterion, not the Streamer criterion.
Q.334Medium
A capacitor bank of 0.1μF is charged to 100 kV for an impulse generator. The energy stored in the capacitor is:
In high voltage testing laboratories, the term 'grading rings' (or guard rings) on test bushings and post insulators are used primarily to:
Answer: B
Grading rings (also called corona rings or stress control rings) are metallic toroidal rings fitted at the high-voltage ends of insulators and bushings. Their primary function is to redistribute the non-uniform electric field along the insulator surface, reducing the peak electric stress concentration at the metal-insulator junction. This prevents premature corona inception and surface flashover. They do not primarily serve a mechanical, grounding, or leakage-distance function.
Q.336Medium
The power factor (dissipation factor, tanδ) of a healthy high-voltage cable insulation is typically in the range:
Answer: C
For healthy, high-quality cable insulation (such as XLPE or impregnated paper), the dissipation factor tanδ is very small, typically in the range:
tanδ≈10−3 to 10−2
Values significantly higher than this indicate moisture ingress, aging, or contamination. A tanδ approaching 0.1 or higher would indicate severely deteriorated insulation.
Q.337Medium
In partial discharge (PD) measurement, the quantity 'apparent charge' q is expressed in units of picocoulombs (pC). If a PD pulse results in a voltage change ΔV across a coupling capacitor Ck=1000 pF, and ΔV=5 mV, then the apparent charge is:
The apparent charge is the charge that, if injected at the terminals of the test object, would give the same reading on the measuring instrument as the actual partial discharge.
Q.338Medium
The back-flashover phenomenon on a transmission line tower occurs when:
Answer: B
Back-flashover is a specific phenomenon where lightning strikes the tower top or shield (ground) wire. The large lightning current I flowing through the tower footing resistance Rf raises the tower potential to Vtower=I⋅Rf. If this potential exceeds the insulator string's impulse flashover voltage, a flashover occurs from the grounded tower structure back to the (relatively lower potential) line conductor — hence the term 'back-flashover'. This is distinct from a shielding failure (direct stroke to conductor) and is strongly influenced by the tower footing resistance.
Q.339Medium
A separately excited DC motor runs at 1000 rpm at rated load with an armature voltage of 200 V and armature current of 20 A. If the armature resistance is 1Ω, what is the back EMF of the motor?
Answer: A
The back EMF is given by:
Eb=Va−IaRa
Substituting the values:
Eb=200−(20×1)=200−20=180V
Q.340Medium
In a Variable Frequency Drive (VFD) controlling an induction motor, the V/f ratio is kept constant primarily to:
Answer: A
The air-gap flux in an induction motor is proportional to V/f. By keeping the V/f ratio constant as frequency is varied, the magnetic flux in the air gap remains constant, which ensures the motor can develop rated torque throughout the speed range without magnetic saturation or under-excitation. This is the fundamental principle of scalar (V/f) control.