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Voltage Regulation Flashcards

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

Read the first 7 Voltage Regulation flashcards as text
  1. A system operator needs to transfer reactive power support from a remote generator to a local source. Why might this approach be problematic?

    Answer: Reactive power cannot be economically transmitted over long distances due to high reactive losses in line impedance

    Reactive power is highly localized because transmission line impedance causes large reactive voltage drops over distance, making remote reactive sources much less effective than local ones.

  2. What is the relationship between power factor and reactive power consumption at an industrial load bus?

    Answer: Lower power factor means more reactive power is consumed for the same active power output

    A lower power factor (more lagging) means a larger reactive current component for a given MW load, requiring more reactive power supply and causing greater voltage depression.

  3. Which protection relay function is specifically designed to prevent a generator from operating in an under-excited condition that could threaten voltage stability?

    Answer: Loss-of-field (40) relay

    The loss-of-field relay (ANSI 40) detects when a generator loses excitation, which would cause it to absorb reactive power (act as an induction generator) and potentially destabilize local voltage.

  4. An automatic voltage regulator (AVR) on a generator has a droop setting of 5%. What does this droop setting accomplish in a multi-machine system?

    Answer: It causes terminal voltage to decrease slightly as reactive output increases, enabling stable reactive power sharing among parallel generators

    Droop allows the voltage set point to decrease proportionally as reactive output increases, preventing reactive power hunting between parallel generators and enabling stable load sharing.

  5. When a heavily loaded 345 kV line trips, what is the IMMEDIATE effect on voltage at the sending-end bus?

    Answer: Voltage rises because the reactive load of the line is removed

    When a heavily loaded line trips, the inductive reactive losses associated with that load current disappear, and the reactive demand on the bus drops, causing voltage to rise transiently.

  6. What operational action should an operator take when a key 500/230 kV transformer's LTC reaches its maximum tap position but voltage is still below the lower limit?

    Answer: Secure additional reactive power support from generators, capacitor banks, or SVCs

    When the LTC is at its limit, voltage regulation must rely on reactive power sources; operators should bring generators out of VAR limits, switch in capacitor banks, or dispatch SVCs.

  7. What is meant by 'reactive capability curve' of a generator, and why is it operationally important?

    Answer: A graph showing how much reactive power the generator can produce or absorb at various MW outputs within thermal and stability limits

    The reactive capability curve defines the permissible operating region (P-Q envelope) bounded by armature current, field current, and stability limits, telling operators how much reactive flexibility is available at any MW level.