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Voltage Regulation and Excitation Flashcards

7 cards from real EGSA practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 7 Voltage Regulation and Excitation flashcards as text
  1. What does a negative voltage regulation value indicate about a generator's performance?

    Answer: Terminal voltage rises from no-load to full-load

    Negative voltage regulation means the terminal voltage increases as load is applied, which is characteristic of generators with leading power factor loads.

  2. In a brushless excitation system, what component rectifies AC exciter output to supply DC to the main rotor field?

    Answer: A rotating diode assembly mounted on the rotor shaft

    In brushless exciters, rotating rectifier diodes mounted on the rotor shaft convert AC output of the exciter armature to DC for the main generator field without brushes or slip rings.

  3. A generator is operating at rated voltage with no load. When full resistive load is applied, voltage drops 8% before the AVR corrects it. This initial dip is primarily caused by:

    Answer: Exciter time constant delay

    The initial voltage dip before AVR correction is largely due to the excitation system's time constant—it takes finite time for field current to change and terminal voltage to recover.

  4. What is the purpose of a derivative (rate) feedback signal in an AVR?

    Answer: To improve transient response and dampen voltage oscillations

    Derivative feedback responds to the rate of voltage change, helping to dampen oscillations and speed up transient response after sudden load changes.

  5. Reactive droop compensation in an AVR causes generator terminal voltage to:

    Answer: Drop proportionally as reactive load increases

    Reactive droop causes terminal voltage to decrease as reactive (lagging) load increases, enabling stable reactive load sharing between parallel generators.

  6. A static excitation system differs from a brushless system primarily because it:

    Answer: Supplies field current via slip rings from a stationary thyristor rectifier

    Static excitation systems use thyristor rectifiers on a stationary platform and deliver controlled DC field current to the rotor through slip rings and brushes.

  7. When two generators are operating in parallel and one has a higher voltage setpoint, what will happen to reactive power sharing?

    Answer: The generator with higher setpoint will supply more reactive power to the bus

    A generator with a higher excitation voltage setpoint will push more reactive power into the bus, taking on a greater share of the total reactive load.