A Hybrid PWM Applied to High-Power Three-Level Inverter-Fed Induction-Motor Drives
Гибридный ШИМ, применённый в мощных трёхуровневых приводах с инвертором и асинхронным двигателем
2010-11-10
SCID: 54.1/ng5zu8nh
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hybrid pulsewidth modulationminimum pulsewidth (MPW)selective harmonic elimination PWMspace-vector PWMthree-level neutral-point-clamped inverter
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Abstract (AI)
A hybrid pulsewidth modulation (PWM), combining the merits of both space-vector PWM (SVPWM) and selective harmonic elimination (SHE) PWM (SHEPWM), is proposed for three-level neutral-point-clamped (NPC) inverter-fed high-power adjustable-speed drives, which uses asynchronous SVPWM at low frequency and SHEPWM at high frequency. For SHEPWM, a novel formula is proposed to obtain the initial values of switching angles, leading to another valid solution that is different from the known ones in the literature. Furthermore, it is shown that, by eliminating the quarter-wave symmetry, unlimited groups of solutions to three-level SHEPWM can be obtained. The characteristics of the multiple solutions in terms of harmonic distribution, pulsewidth, and total harmonic distortion are investigated for the application of SHE in practical drives. Switching between SVPWM and SHEPWM is problematic if no appropriate measure is taken, particularly when the influence of the minimum pulsewidth (MPW) is considerable. A simple but effective method, taking into account the MPW, is proposed in this paper to address this problem. The multiple groups of solutions to SHE are simulated and experimentally verified on a low-voltage three-level NPC inverter prototype. Experimental results obtained from a low-voltage prototype and an industrial 6-kV/1250-kW three-level drive are presented to validate the smooth switching between SVPWM and SHEPWM.
Key Findings
1
A hybrid PWM combining asynchronous SVPWM at low frequency and SHEPWM at high frequency is proposed for three-level NPC inverter-fed high-power drives.
2
A novel formula for initial switching-angle values in three-level SHEPWM is derived, yielding a valid solution different from known literature solutions.
3
By eliminating quarter-wave symmetry, unlimited groups of solutions to three-level SHEPWM can be obtained.
4
Characteristics of multiple SHEPWM solutions (harmonic distribution, pulsewidth, THD) are analyzed for practical drive application.
5
Multiple SHE solution groups are validated by simulation and experiments on a low-voltage three-level NPC inverter prototype.
6
Smooth switching between SVPWM and SHEPWM is experimentally validated on both a low-voltage prototype and an industrial 6-kV/1250-kW three-level drive.
7
Switching between SVPWM and SHEPWM can be problematic due to minimum pulsewidth (MPW) effects; a simple MPW-aware method is proposed to ensure smooth switching.
Research Object
High-power three-level neutral-point-clamped (NPC) inverter-fed adjustable-speed induction-motor drives
Research Subject
Hybrid PWM strategy combining space-vector PWM (SVPWM) and selective harmonic elimination PWM (SHEPWM) including switching-angle solution multiplicity, harmonic distribution, pulsewidth/MPW effects, and smooth transition control between SVPWM and SHEPWM for high-power three-level inverter drives
Publication Details
Publication Date
2010-11-10
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