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Evaluation of POD and APOD multicarrier SPWM techniques for three-phase seven-level diode clamped multilevel inverter fed induction motor drive using FPGA

机译:用于使用FPGA的三相七级二极管夹紧多电平逆变器馈电电动机驱动的POD和Apod多载波SPWM技术的评估

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Multilevel inverters have drawn tremendous interest in high power high voltage applications due to their merits such as reduced voltage stress on switches, lower EMI problems and reduction in THD. The MLI technology is also advantageous in improving output waveforms due to the higher number of levels in the waveform of output voltage along with a reduced input filter size which is useful for grid connected applications. This paper focuses on implementation of three-phase diode clamped multilevel inverter fed induction motor drive using various multicarrier-based sinusoidal pulse width modulation techniques. The performance analysis of the inverter is carried out using phase opposition disposition (POD) and alternate phase opposition disposition (APOD) techniques. In addition to this, the comparison of the modulation methods is also analysed. Simulation is performed using MATLAB/Simulink. The POD and APOD carrier-based sinusoidal pulse width modulation techniques for three-phase seven-level diode clamped multilevel inverter are implemented on VPE Spartan 3A DSP board using Xilinx field programmable gate array (FPGA) and the experimental results are presented to validate the effectiveness of the operation of the seven-level diode clamped multilevel inverter using PWM strategies.
机译:由于它们的优点,多级逆变器对高功率高压应用具有巨大的兴趣,例如降低电压应力,降低EMI问题和THD的减少。 MLI技术在提高输出波形的情况下也是有利的,由于输出电压波形的较多的电平以及对网格连接的应用有用的输入滤波器大小的降低的输入滤波器大小。本文侧重于采用各种多载波基正弦脉冲宽度调制技术实现三相二极管夹紧多级逆变器馈电感应电动机驱动。使用相反对分配(POD)和交替相对反相配置(Apod)技术进行逆变器的性能分析。除此之外,还分析了调制方法的比较。使用MATLAB / SIMULINK执行模拟。用于三相七级二极管夹紧多级逆变器的POD和基于载体的基于载体的正弦脉冲宽度调制技术在VPE Spartan 3A DSP板上实现了使用Xilinx现场可编程门阵列(FPGA),并提出了实验结果以验证有效性七级二极管夹紧多级逆变器的运行使用PWM策略。

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