Medium-Voltage Drives (MVD) - Pulse Width Modulation (PWM) Techniques

Adil Alahmad, F. Kaçar, Ö. Farsakoğlu, C. P. Uzunoğlu
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引用次数: 1

Abstract

In order to keep up with rising customer demand, more and more MVDs are being used to fuel MV motors. Power delivery to a load may be modulated by changing the pulse width. A digital signal might be transformed into an analog one using the pulse width modulation (PWM) technique. A pulse-width modulated (PWM) signal, which takes the form of a rectangular wave, alternates between ON and OFF states. The characteristics of a pulse-width modulation (PWM) signal are determined by its frequency and duty cycle. The inverter's switching and harmonic losses may be minimized by using PWM technology. In order to cut down on switching loss, hybrid PWM inverters operate half of their switches at low frequencies while operating the other half at high frequencies. Because switching loss and heat dissipation from switches are unpredictable, system reliability is reduced. It's possible that switching will lead to poor heat dissipation and power losses. However, problems like these may be lessened with the use of a PWM technique. By alternating between low-frequency and high-frequency signals, the output voltage and frequency may be adjusted, which in turn reduces the power supply's harmonic content. Methods such as Multiple Space Vector Modulation, Selective Harmonic Elimination, Multilevel Carrier Phase Shifted, and Multilevel Carrier Level Shifted Pulse Width Modulation has been considered. However, although these methods effectively reduce higher-order harmonics, it is more complex to increase inverter efficiency in a way that does not introduce additional losses. To eliminate these harmonics, a filter is made. Comparisons are made between sinusoidal PWM, PWM with a phase angle of sixty degrees, and trapezoidal PWM in terms of performance. The study tracked the effects of modulation index and carrier frequency adjustments on inverter output.
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中压驱动(MVD) -脉冲宽度调制(PWM)技术
为了满足不断增长的客户需求,越来越多的mvd被用于中压电机。给负载的功率可以通过改变脉冲宽度来调制。利用脉宽调制(PWM)技术可以将数字信号转换为模拟信号。脉冲宽度调制(PWM)信号采用矩形波的形式,在ON和OFF状态之间交替。脉宽调制(PWM)信号的特性是由其频率和占空比决定的。采用PWM技术可以最大限度地降低逆变器的开关损耗和谐波损耗。为了降低开关损耗,混合PWM逆变器的一半开关在低频工作,另一半开关在高频工作。由于交换机的开关损耗和散热不可预测,降低了系统的可靠性。切换可能会导致散热不良和功率损耗。但是,使用PWM技术可以减少这些问题。通过低频和高频信号的交替,可以调节输出电压和频率,从而降低电源的谐波含量。研究了多空间矢量调制、选择性谐波消除、多电平载波移相和多电平载波移脉宽调制等方法。然而,尽管这些方法有效地降低了高次谐波,但在不引入额外损耗的情况下提高逆变器效率是比较复杂的。为了消除这些谐波,制作了一个滤波器。比较了正弦PWM、相角为60度的PWM和梯形PWM的性能。研究跟踪了调制指数和载波频率调整对逆变器输出的影响。
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