单相PWM逆变器的设计、实现及性能分析

Narendra Kumar, D. Joshi, Sachin Singhal
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引用次数: 2

摘要

将直流电源转换成所需电压和频率水平的交流电源的电力电子设备称为逆变器。电压源逆变器产生输出电压或电流,其电平要么为零到正电压,要么为零到负电压,这意味着两个电平。这些双电平逆变器由不同类型的门控信号供电,如正方形、准正方形和正弦脉宽调制信号。不同的门控信号在输出信号中产生不同的谐波电平。本文研制了一种以mosfet作为功率开关的单相逆变器的硬件样机。mosfet由方形和准方形门控信号驱动。这些门控信号是通过使用MOSFET驱动IC设计驱动电路产生的。为了维持电压水平,通过控制门控脉冲的脉宽来维持MOSFET的导通时间间隔。研究了逆变器在RL负载下的性能。在SIMULINK中进行仿真,根据输出电压、负载电流、THD电平等参数,将仿真结果与实验模型进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, implementation and performance analysis of a single phase PWM Inverter
Power Electronic equipment that converts a DC power into AC power at required voltage and frequency level is known as Inverter. Voltage Source inverters produce an output voltage or current with levels either zero to positive voltage or zero to negative voltage that means two levels. These bi-level inverters are powered by different type of gating signals like square, quasi - square and sinusoidal Pulse width modulated signals. Different gating signals result in different harmonic levels in the output signal. In this paper, a hardware prototype of a single phase inverter using MOSFETs as the power switches has been developed. The MOSFETs are driven by square and quasi-square gating signals. These gating signals have been generated by designing the driver circuit using a MOSFET driver IC. In order to maintain the voltage level, the conduction time interval of MOSFETs has been maintained by controlling the pulse width of the gating pulses. Performance of the inverter has been studied for RL load. Simulation has been done in SIMULINK, results of simulation and experimental model has been compared on the basis of various parameters like output voltage, load current and THD levels.
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