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  2. Total harmonic distortion - Wikipedia

    en.wikipedia.org/wiki/Total_harmonic_distortion

    For instance, crossover distortion at a given THD is much more audible than clipping distortion at the same THD, since the harmonics produced by crossover distortion are nearly as strong at higher-frequency harmonics, such as 10× to 20× the fundamental, as they are at lower-frequency harmonics like 3× or 5× the fundamental.

  3. Static synchronous compensator - Wikipedia

    en.wikipedia.org/wiki/Static_synchronous_compensator

    If each phase has its own three-level converter, then a total of five levels can be created. This creates a very crude sine wave, however PWM still offer less harmonic generation (as the pulses are still on all five levels). Three-level converters can also be combined with transformers and phase shifting to create additional levels. [19]

  4. Voltage optimisation - Wikipedia

    en.wikipedia.org/wiki/Voltage_optimisation

    [5] The possible effects if the level of harmonics, known as total harmonic distortion becomes too high include damage to sensitive electronic equipment [5] and reduction in the efficiency of the HV transformer. [6] The efficiency of electrical loads can be improved by attenuating harmonics at the supply, or by preventing their generation.

  5. Voltage regulator - Wikipedia

    en.wikipedia.org/wiki/Voltage_regulator

    Early automobile generators and alternators had a mechanical voltage regulator using one, two, or three relays and various resistors to stabilize the generator's output at slightly more than 6.7 or 13.4 V to maintain the battery as independently of the engine's rpm or the varying load on the vehicle's electrical system as possible.

  6. Power inverter - Wikipedia

    en.wikipedia.org/wiki/Power_inverter

    One measure of the purity of a sine wave is the total harmonic distortion (THD). [4] Technical standards for commercial power distribution grids require less than 3% THD in the wave shape at the customer's point of connection. IEEE Standard 519 recommends less than 5% THD for systems connecting to a power grid.

  7. Electric power quality - Wikipedia

    en.wikipedia.org/wiki/Electric_power_quality

    Electric power quality is the degree to which the voltage, frequency, and waveform of a power supply system conform to established specifications. Good power quality can be defined as a steady supply voltage that stays within the prescribed range, steady AC frequency close to the rated value, and smooth voltage curve waveform (which resembles a sine wave).

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