A Carrier-Based Modulation Scheme to Reduce the Third Harmonic Component of Common-Mode Voltage in a Three-Phase Inverter Under High DC Voltage Utilization

Схема модуляции на основе несущей для уменьшения третьей гармоники в общemode напряжении в трехфазном инверторе при высокой эффективности использования постоянного напряжения
Jin Huang, Quanhui Liu, Xulong Wang, Kaicheng Li
2017-08-28

carrier-based pulse width modulation (PWM)common-mode voltage (CMV) third harmonic reductionhigh DC voltage utilizationmidpoint-fluctuation carrier (MFC)three-phase inverter
High dc voltage utilization is one of the important requirements in a three-phase inverter. Under some carrier-based pulse width modulations (PWMs), the dc voltage utilization can reach the same maximum as that under the space vector modulation. But the third harmonic component of common-mode voltage (CMV) will be increased markedly while using these carrier-based PWMs in inverters. To improve the situation, this paper proposes that a midpoint-fluctuation carrier (MFC) scheme should be used in the three-phase inverter. The MFC is formed by adding a midpoint-fluctuation signal on the standard symmetrical triangular carrier. By analyzing the linear modulation region of the midpoint-fluctuation signals, a minimum fluctuant signal in the linear modulation region is designed in the paper. Compared with the use of other conventional schemes in the three-phase inverter, the use of minimum MFC scheme has higher fundamental amplitude in the output line voltage and smaller magnitude of the third harmonic in the CMV. The feasibility and validity of the MFC are proved by experiment results in a three-phase inverter.
1
A midpoint-fluctuation carrier (MFC) scheme is proposed, created by adding a midpoint-fluctuation signal to the standard symmetrical triangular carrier.
2
A minimum fluctuant signal within the linear modulation region is designed for the MFC to optimize performance.
3
Carrier-based PWMs can achieve the same maximum DC voltage utilization as space vector modulation but markedly increase the third harmonic of common-mode voltage (CMV).
4
Experimental results on a three-phase inverter validate the feasibility and effectiveness of the MFC scheme.
5
Using the minimum MFC reduces the magnitude of the third harmonic in the CMV compared with conventional schemes.
6
Using the minimum MFC yields higher fundamental amplitude in output line voltage compared with conventional schemes.

Three-phase inverter employing carrier-based pulse width modulation with a midpoint-fluctuation carrier

Reduction of the third harmonic component of common-mode voltage and improvement of fundamental output line-voltage amplitude under high DC voltage utilization via a minimum midpoint-fluctuation carrier modulation scheme

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2017-08-28
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Jin Huang
Quanhui Liu
Xulong Wang
Kaicheng Li
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