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Power Electronic Drives Quiz - Advanced to Expert

Total questions: 40

Worksheet time: 20mins

Name
Class
Date
1.

In a high-frequency resonant converter, why is Zero-Voltage Switching (ZVS) preferred over hard switching?

a)

Increases voltage stress

b)

Reduces switching losses and EMI

c)

Requires bulky filters

d)

Reduces power factor

2.

A PWM inverter for a high-speed induction motor generates excessive bearing currents. What’s a solution?

a)

Increase carrier frequency

b)

Use shaft grounding or insulated bearings

c)

Lower V/f ratio

d)

Increase dead-time

3.

A synchronous buck converter has output voltage oscillations. What is a possible solution?

a)

Increase inductor ESR

b)

Increase output capacitor and adjust loop compensation

c)

Use open-loop control

d)

Decrease switching frequency

4.

In an active front-end converter used in regenerative braking, what does the controller maintain?

a)

High input current

b)

Unity power factor and constant DC bus

c)

Motor slip

d)

Load voltage

5.

A boost converter shows subharmonic oscillations under high duty cycle. What controller solution helps?

a)

Voltage-mode control

b)

Type-III compensator or slope compensation

c)

Open-loop

d)

Output shorting

6.

In a modular multilevel converter (MMC), what is the major challenge in balancing?

a)

Output voltage

b)

Submodule capacitor voltage balancing

c)

Commutation

d)

Short circuit protection

7.

In Space Vector Modulation, the benefit over SPWM is:

a)

Higher THD

b)

More torque ripple

c)

Better DC bus utilization and less harmonic distortion

d)

Simpler control

8.

In a bidirectional DC-DC converter for battery management, what is key to prevent shoot-through?

a)

Fixed PWM

b)

Dead-time insertion and synchronous logic

c)

Hall sensors

d)

Increased voltage

9.

An inverter-fed motor generates significant harmonics. What is used to analyze harmonic spectrum?

a)

FFT analysis

b)

Lissajous curve

c)

Wavelet

d)

d-q transformation

10.

In IGBT-based drives for electric traction, why is thermal cycling critical?

a)

Reduces noise

b)

Causes solder fatigue and failure

c)

Improves efficiency

d)

Stabilizes Vce

11.

In a resonant LLC converter, what defines the soft-switching region?

a)

Operating at resonance or above

b)

Operating below resonance

c)

Running open loop

d)

Dead-time only

12.

For high-efficiency solar MPPT converters, which method ensures fast convergence and low ripple?

a)

Perturb & Observe

b)

Incremental Conductance with Adaptive Step Size

c)

Constant Voltage

d)

Open Circuit Voltage

13.

In high-voltage drives, what technique is used to suppress dv/dt-related insulation failure?

a)

Reduce carrier frequency

b)

dv/dt filters or sine filters at output

c)

PWM overlap

d)

Lower dead-time

14.

A motor controlled by a 3-level NPC inverter shows neutral point voltage oscillation. What’s the cause?

a)

Overmodulation

b)

Asymmetric loading and poor clamping diode response

c)

Diode loss

d)

Increased carrier

15.

In traction systems, why are regenerative drives paired with supercapacitors or batteries?

a)

Reduce speed

b)

Store recovered energy during braking and reuse

c)

Increase current

d)

Maintain slip

16.

A digitally controlled converter exhibits unstable transients. What helps?

a)

Use analog loop

b)

Add digital filter and loop delay compensation

c)

Disable current mode

d)

Increase switching frequency blindly

17.

In power factor correction (PFC) converters, what's the major control goal?

a)

Reduce THD and maintain input current in phase with voltage

b)

Decrease PWM

c)

Avoid boost

d)

Increase voltage

18.

In cascaded H-bridge inverters, which fault is most difficult to detect?

a)

Gate driver dropout

b)

Submodule capacitor short

c)

IGBT open circuit

d)

Communication failure in one bridge

19.

What’s the impact of parasitic inductance in PCB layout for high-speed drives?

a)

More cooling

b)

EMI generation and voltage overshoot during switching

c)

Torque ripple

d)

Load mismatch

20.

Why is digital control preferred over analog in modern power drives?

a)

More delay

b)

Greater precision, reconfigurability, and adaptive control

c)

Less complex

d)

No power loss

21.

In matrix converters, the absence of a DC link capacitor results in:

a)

High power factor but complex control strategies

b)

Poor frequency modulation

c)

Inability to drive motors

d)

Inverted DC output

22.

In silicon carbide (SiC)-based power drives, what is the major advantage over silicon IGBTs?

a)

Lower conduction losses

b)

Higher voltage handling and faster switching with lower losses

c)

Lower input impedance

d)

Simpler gate drive

23.

In a Direct Torque Control (DTC) scheme for induction motors, what is a critical challenge?

a)

High switching losses

b)

Torque ripple at low speeds due to sector-based control

c)

High THD

d)

Locked rotor

24.

In a drive system using sensorless vector control, what parameter is most difficult to estimate at low speed?

a)

Stator current

b)

Rotor flux position

c)

Voltage

d)

Slip frequency

25.

The shoot-through in a Z-source inverter is:

a)

Avoided at all costs

b)

Desirable and used for boosting

c)

A short circuit

d)

Triggered randomly

26.

In a multilevel converter used in HVDC transmission, fault-tolerant operation can be achieved through:

a)

Circuit breaker

b)

Redundant submodules and bypass switches

c)

Extra PWM frequency

d)

Overloading switches

27.

A silicon carbide MOSFET gate driver must be capable of:

a)

Very fast switching with tight dv/dt control and negative gate bias

b)

Constant current mode

c)

Linear gain

d)

No feedback

28.

In wide-bandgap semiconductor-based motor drives, EMI is a major concern. The best mitigation strategy is:

a)

Use low carrier frequency

b)

Optimized PCB layout with shielding and proper grounding

c)

Use snubberless topologies

d)

Use high-speed fans

29.

For high-performance PMSM drives, field weakening is implemented to:

a)

Reduce speed

b)

Extend speed range beyond base speed by reducing back-EMF

c)

Disable inverter

d)

Control torque

30.

The major challenge in GaN-based converters is:

a)

Gate leakage

b)

Driving high current

c)

Managing high switching speed-induced parasitics

d)

Low temperature stability

31.

In control of BLDC motors, a trapezoidal waveform is used for:

a)

Smooth torque

b)

Simple commutation aligned with back EMF

c)

Efficiency

d)

V/f control

32.

In Model Predictive Control (MPC) of power converters, what is optimized at each control step?

a)

Switching frequency

b)

Future behavior and cost function (e.g., voltage or current error minimization)

c)

Heat loss

d)

PWM

33.

To enable fault-tolerant drive systems in aerospace applications, the drive must have:

a)

Single inverter

b)

Modular redundancy and active fault detection

c)

Small voltage

d)

DSP-based switching

34.

The use of Wide Bandgap Devices (WBG) like SiC/GaN in high-frequency converters primarily improves:

a)

Ripple

b)

EMI

c)

Switching losses and thermal performance

d)

Speed noise

35.

In large industrial drives, regenerative braking into the grid must satisfy:

a)

Overmodulation

b)

Harmonic injection

c)

Grid code compliance, THD limits, and active front end control

d)

Constant PWM

36.

In H-bridge drives used for bidirectional traction motors, regenerative energy is dumped if the bus is unregulated. The better approach is:

a)

Discharge through resistor

b)

Use ultracapacitor or bidirectional DC-DC converter to store/regulate

c)

Add diode

d)

Open the switches

37.

In a high-speed spindle motor controlled by VFD, resonance occurs at a specific speed. How is it avoided?

a)

Increase torque

b)

Skip the resonant frequency range in speed profile

c)

Use lower voltage

d)

Short-circuit motor

38.

Which modulation strategy minimizes common-mode voltage in three-phase inverters?

a)

SPWM

b)

SVPWM

c)

Third harmonic injection

d)

Zero-sequence elimination techniques

39.

In multilevel inverter control, what determines the harmonic elimination pattern?

a)

Switching loss

b)

Selective Harmonic Elimination Pulse Width Modulation (SHE-PWM) equations

c)

PID loop

d)

Load power factor

40.

The limiting factor for increasing the PWM frequency in megawatt-scale converters is:

a)

DSP limit

b)

Thermal design and switching losses of power devices

c)

Load torque

d)

Motor inertia