An improved dead-time compensation scheme for voltage source inverters considering the device switching transition times

A. Guha, G. Narayanan
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引用次数: 9

Abstract

Inverter dead-time, which is meant to prevent shoot-through fault, causes harmonic distortion and change in the fundamental voltage in the inverter output. Typical dead-time compensation schemes ensure that the amplitude of the fundamental output current is as desired, and also improve the current waveform quality significantly. However, even with compensation, the motor line current waveform is observed to be distorted close to the current zero-crossings. The IGBT switching transition times being significantly longer at low currents than at high currents is an important reason for this zero-crossover distortion. Hence, this paper proposes an improved dead-time compensation scheme, which makes use of the measured IGBT switching transition times at low currents. Measured line current waveforms in a 2.2 kW induction motor drive with the proposed compensation scheme are compared against those with the conventional dead-time compensation scheme and without dead-time compensation. The experimental results on the motor drive clearly demonstrate the improvement in the line current waveform quality with the proposed method.
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一种考虑器件切换过渡时间的电压源逆变器死区补偿方案
逆变器死区时间是为了防止击穿故障,导致逆变器输出谐波失真和基波电压变化。典型的死区补偿方案既能保证基波输出电流的幅值符合要求,又能显著改善电流波形质量。然而,即使有补偿,电机线路电流波形被观察到失真接近电流过零。IGBT开关在低电流下的转换时间明显长于高电流下的转换时间,这是造成零交叉失真的重要原因。因此,本文提出了一种改进的死区补偿方案,该方案利用了在低电流下测量到的IGBT开关过渡时间。将采用该补偿方案的2.2 kW感应电机驱动器的实测线电流波形与采用传统死区补偿方案和不采用死区补偿方案的线电流波形进行了比较。电机驱动的实验结果清楚地表明,该方法改善了线路电流波形质量。
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