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A method used to determine the harmonic components of the output waveform of a pulse width modulation (PWM)
inverter is presented. The method calculates the Fourier coefficients of individual positive and negative pulses of the
output PWM waveform and adds them together using the principle of superposition to calculate the Fourier coefficients
of the entire PWM output signal. This method allows direct calculation of harmonic magnitudes and angles without
having to use linear approximations, look-up tables, or Bessel functions. The method presented is a general method that
can easily be extended to various types of multilevel inverters and PWM schemes.-A general method used to conduct a harmonic analysis on carrier-based pulse width modulation inverters
inverter is presented. The method calculates the Fourier coefficients of individual positive and negative pulses of the
output PWM waveform and adds them together using the principle of superposition to calculate the Fourier coefficients
of the entire PWM output signal. This method allows direct calculation of harmonic magnitudes and angles without
having to use linear approximations, look-up tables, or Bessel functions. The method presented is a general method that
can easily be extended to various types of multilevel inverters and PWM schemes.-A general method used to conduct a harmonic analysis on carrier-based pulse width modulation inverters
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三相逆变电源设计.pdf