2023
DOI: 10.12928/telkomnika.v21i1.24263
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Design of 15 level reduced switches inverter topology using multicarrier sinusoidal pulse width modulation

Abstract: In this proposed paper, multicarrier sinusoidal pulse width modulation (M-SPWM) method is implemented for design of 15 level reduced switches inverter topology. This inverter topology generates 15 level output-voltage with suitablelswitching pulse production using M-SPWM and altered level of voltages are attained with distinction of modulationlindex. The split inductor is used to diminish the harmoniclcontent and flatted output current. This type of system which contains different range of different range of v… Show more

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“…Too, it will uphold balance in the ignition waveform at the room phasor PWM crop to repress THD [23], [24]. By paying attention to Figure 7, we get: Igniting the transistor to control the turning round of the three-phase AC motor is expected to be precise because the target is moving at high velocity [25]. Choice of an AC servo motor to avoid motor loss torque, when using a caged rotor AC motor, the motor loses torque when controlled, because the magnetic ground generated in the rotor is not fast enough to reach maximum when generated by the induction principle when high-velocity igniting is performed (>40 kHz).…”
Section: Resultsmentioning
confidence: 99%
“…Too, it will uphold balance in the ignition waveform at the room phasor PWM crop to repress THD [23], [24]. By paying attention to Figure 7, we get: Igniting the transistor to control the turning round of the three-phase AC motor is expected to be precise because the target is moving at high velocity [25]. Choice of an AC servo motor to avoid motor loss torque, when using a caged rotor AC motor, the motor loses torque when controlled, because the magnetic ground generated in the rotor is not fast enough to reach maximum when generated by the induction principle when high-velocity igniting is performed (>40 kHz).…”
Section: Resultsmentioning
confidence: 99%