Compatible Selective Harmonic Elimination for Three-Phase Four-Wire NPC Inverter With DC-Link Capacitor Voltage Balancing
Совместимое селективное подавление гармоник для трехфазного четырехпроводного NPC-инвертора с балансировкой напряжения конденсаторов постоянного звена
2019-08-12
SCID: 54.1/hh32af5f
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Compatible Selective Harmonic Elimination (CSHE)-PWMDC-link capacitor voltage balancingphase voltage waveform symmetrythree-leg four-wire (3L/4W) Neutral Point Clamped (NPC) invertertriplen and non-triplen harmonic elimination
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Abstract (AI)
In this paper a Compatible Selective Harmonic Elimination (CSHE)-PWM is designed for three-leg four-wire (3L/4W) Neutral Point Clamped (NPC) inverter. The proposed CSHE-PWM is capable of eliminating both triplen and non-triplen harmonics from phase voltages and empowers 3L/4W NPC to handle both single/three-phase and linear/nonlinear loads. It has been mathematically proved that DC capacitors self-voltage balancing is achieved thanks to direct control of phase voltage waveform symmetry. Moreover, the cancellation of specified triplen and non-triplen orders has the advantage of having low capacitors voltage ripple. Therefore, the applied technique not only helps removing one leg of the inverter that reduces associate complex calculations and switching losses, but also directly controls phase voltage harmonic profile compared to SHE-PWM for four-leg four-wire (4L/4W) NPC. CSHE-PWM is practically tested on a NPC inverter prototype to validate the efficient harmonic elimination from the phase voltage waveforms along with capacitors voltages balancing under symmetrical/asymmetrical loads.
Key Findings
1
CSHE-PWM enables 3L/4W NPC inverters to handle single- and three-phase, as well as linear and nonlinear loads by controlling phase voltage harmonic content.
2
Cancellation of selected triplen and non-triplen harmonic orders leads to low capacitor voltage ripple.
3
Designed a Compatible Selective Harmonic Elimination PWM (CSHE-PWM) for three-leg four-wire (3L/4W) NPC inverter that eliminates both triplen and non-triplen harmonics from phase voltages.
4
Mathematical proof shows DC-link capacitor self-voltage balancing is achieved via direct control of phase voltage waveform symmetry.
5
Practical prototype tests validate effective harmonic elimination in phase voltages and capacitor voltage balancing under symmetrical and asymmetrical loads.
6
Technique allows removal of one inverter leg—reducing computation complexity and switching losses—while directly controlling phase voltage harmonics versus 4L/4W SHE-PWM.
Research Object
Three-leg four-wire (3L/4W) Neutral Point Clamped (NPC) inverter with DC-link capacitors (prototype)
Research Subject
Design and evaluation of a Compatible Selective Harmonic Elimination PWM (CSHE-PWM) method for eliminating triplen and non-triplen phase-voltage harmonics and achieving DC-link capacitor self-voltage balancing (low capacitor voltage ripple) under symmetrical/asymmetrical single- and three-phase, linear and nonlinear loads
Publication Details
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2019-08-12
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