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The effect of sampling rates on the performance of a three phase PWM inverter and choice of appropriate sampling rates

机译:采样率对三相PWM逆变器性能的影响以及合适的采样率的选择

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Pulse Width Modulated (PWM) inverters are most commonly used for grid interfacing in renewable energy systems and for speed control of induction motors in Variable Frequency Drives (VFD), wherein the control computations are implemented in digital signal controllers (sample-based in nature) and are highly complicated. Sampling interval is a critical parameter in PWM control algorithms, because the controller is required to complete one set of control computations within one sampling interval. This is owing to the fact that PWM control algorithms typically involve several axis transformations during a single sampling interval, and consequently take up thousands of instruction cycles, as the trigonometric transformation equations are implemented in modern processors using iterative procedures. This paper presents the effect of sampling frequency on the performance of a PWM inverter in a VFD for speed control of an induction motor. A step by step procedure for sampling rate selection is also proposed. A simulation study is done using MATLAB/Simulink to analyze the performance of the PWM inverter under variable frequency operation. At a fundamental frequency of 50 Hz, a substantial reduction in the THD, by about 9.12% in the voltage and about 39.01% in the current is observed with the proposed increase in sampling frequency by about ten times. Also, a reduction in the % error in voltage by about 5.3% is observed.
机译:脉宽调制(PWM)逆变器最常用于可再生能源系统中的电网接口以及变频驱动器(VFD)中感应电动机的速度控制,其中控制计算在数字信号控制器中进行(本质上是基于样本的)并且非常复杂。采样间隔是PWM控制算法中的关键参数,因为要求控制器在一个采样间隔内完成一组控制计算。这是由于PWM控制算法通常在单个采样间隔内涉及多个轴转换,并因此占用了数千个指令周期,因为在现代处理器中使用迭代过程实现了三角转换方程。本文介绍了采样频率对VFD中用于感应电动机速度控制的PWM逆变器性能的影响。还提出了用于选择采样率的分步过程。使用MATLAB / Simulink进行了仿真研究,以分析变频运行下PWM逆变器的性能。在50 Hz的基频下,观察到THD显着降低,电压降低了约9.12%,电流降低了约39.01%,并且采样频率提高了约十倍。另外,观察到电压的%误差降低了约5.3%。

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