Analysis and compensation of Dead-time effect in multi-level diode clamped VSI based on simplified SVPWM

Chengzhu Piao, J. Hung
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引用次数: 6

Abstract

This study describes a detailed analysis and uniform compensation of dead-time effect in three-phase multi-level (N≥3) diode clamped voltage source inverter (DCVSI). To prevent a short circuit in the dc-link, a switching delay time is needed to insert into pulse width modulation (PWM) signals. Due to the dead time, the waveform of output current emerges distortion and increases total harmonic distortion (THD). Dead time compensation is necessary to optimize current distortion and reduce THD. Through analysis of dead time effect, deviations of voltage vectors caused by dead time effect are dependent on the direction of output currents. The voltage distortion increases harmonic components of output voltage and decreases control performance. Combined with the characteristics of simplified SVPWM, in order to avoid determining the direction of output currents, an approximate compensation method for dead time effect is suggested. The value of dead time is adjusted on-line by the value of corresponding phase current. The deviation of voltage vectors caused by dead time effect is directly compensated to three phase reference voltages. This dead time compensation method is suitable to multi-level DCVSI. Simulation results indicate that the proposed scheme can effectively improve the sinusoidal waveform and phase offset of the output current. The algorithm is simple to understand and easy to digital realization.
基于简化SVPWM的多电平二极管箝位VSI死区效应分析与补偿
本文对三相多电平(N≥3)二极管箝位电压源逆变器(DCVSI)的死区效应进行了详细分析和均匀补偿。为了防止直流链路短路,需要在脉宽调制(PWM)信号中插入一个开关延迟时间。由于死区时间的存在,输出电流波形出现畸变,使总谐波失真(THD)增大。Dead time补偿是优化电流畸变和降低THD的必要手段。通过对死区效应的分析,发现死区效应引起的电压矢量偏差与输出电流方向有关。电压畸变增加了输出电压的谐波分量,降低了控制性能。结合简化SVPWM的特点,为避免确定输出电流方向,提出了一种对死区时间效应的近似补偿方法。死区时间由相应的相电流值在线调节。死区效应引起的电压矢量偏差直接补偿到三相参考电压上。这种死区补偿方法适用于多级DCVSI。仿真结果表明,该方案能有效改善输出电流的正弦波形和相位偏移。该算法简单易懂,易于数字化实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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