级联高压变频器脉宽调制方法

V. Busher, O. Chornyi, V. Tytiuk, O. Glazeva, Oleksandr Rozlutskyi, Vitaliy Kuznetsov
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摘要

目的。这项工作的目的是比较各种方法的有效性,纠正电池故障的串级高压变频器。这些方法在事故模式下提供了最小的电机电压降、最小的负载和最小的电磁转矩振荡,并评估了在正常和紧急模式下注入三次谐波和空间矢量PWM的脉宽调制(PWM)方法的有效性。方法。我们使用所有分析方法的数学和几何解释-正弦PWM (SPWM),平衡正弦PWM (BSPWM),注入三次谐波的平衡PWM (THPWM)和平衡空间矢量PWM (SVPWM)。结果。通过移动零点和旋转相位矢量来平衡相对电压的方法,在这种方法中,相对电压的振幅减小到可能的最小值。注入三次谐波允许您进一步提高电源在电压方面的利用系数。但是相位电压对称性的破坏导致需要降低电压幅值以排除电源的饱和,与理论上可能的15.6%相比,这降低了该系数。平衡空间矢量PWM方法的一个显著特点是一阶谐波的幅值总是比圆半径大15.6%。将空间矢量PWM (SVPWM)、三次谐波注入相电压平衡(THPWM)和正弦PWM方法进行了比较,结果表明SVPWM是最佳方法。尽管实现这种方法的数学软件比较复杂,但它在所有考虑的3…6级联变换器的紧急模式下都提供了最佳性能。文中给出了各种方法的指标表。使用平衡的SVPWM与场定向控制相结合,可以获得电力驱动,在发生事故时,几乎没有冲击机械和电磁过程。电池损坏后,电流、电磁转矩和电机速度沿着要求的轨迹变化。
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Methods of Pulse Width Modulation in Cascaded High Voltage Frequency Converters
Purpose. The aim of this work is to compare the effectiveness of various methods for correcting cell failures in cascade high voltage frequency converters. These methods provide the smallest voltage drop on the motor, the least loads and oscillation of electromagnetic torque in an accident modes, and evaluate the effectiveness of pulse width modulation (PWM) methods with the injection of third harmonic and space-vector PWM in normal and emergency modes. Methodology. We use mathematical and geometrical interpretation of all analysed methods - Sinusoidal PWM (SPWM), Balanced sinusoidal PWM (BSPWM), Balanced PWM with injected 3rd harmonic (THPWM) and Balanced Space Vector PWM (SVPWM). Results. The method of balancing the phase-to-phase voltages by to such a shift of the zero point and rotation of the phase vectors, in which the amplitude of the phase-to-phase voltage decreases to the minimum possible value. Injection of the 3rd harmonic allows you to further increase the utilisation factor of power supplies in terms of voltage. But the violation of the symmetry of the phase voltages leads to the need to reduce the voltage amplitude to exclude saturation of the power supplies, which reduces this coefficient compared to the theoretically possible 15.6%. A distinctive feature of the method of balanced Space Vector PWM is that the amplitude of the 1st harmonic is always greater than the radius of the circle by 15.6%. Comparison of methods of space vector PWM (SVPWM), balancing of phase-to-phase voltage with the injection of the 3rd harmonic (THPWM) with sinusoidal PWM shows that SVPWM is the best method. Despite the more complex mathematical software for the implementation of this method, it provides the best performance in all considered emergency modes of 3…6 cascade converters. The Table of indicators for all methods are presented in the article. The use of a balanced SVPWM in combination with field oriented control makes it possible to obtain an electric drive in which, in the event of an accident, there are practically no shock mechanical and electromagnetic processes. After damage of cells the currents, electromagnetic torque and motor speed change along the required trajectory.
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