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Multistring Five-Level Inverter With Novel PWM Control Scheme for PV Application

机译:用于光伏应用的具有新型PWM控制方案的多串五电平逆变器

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摘要

This paper presents a single-phase multistring five-level photovoltaic (PV) inverter topology for grid-connected PV systems with a novel pulsewidth-modulated (PWM) control scheme. Three PV strings are cascaded together in parallel configuration and connected to a five-level inverter to produce output voltage in five levels: zero, $+1/2V_{rm dc}$, $V_{ rm dc}$, $-1/2V_{rm dc}$, and $-V_{rm dc}$. Two reference signals that were identical to each other with an offset that was equivalent to the amplitude of the triangular carrier signal were used to generate PWM signals for the switches. DSP TMS320F2812 is used to implement this PWM switching scheme together with a digital proportional–integral current control algorithm. The inverter offers much less total harmonic distortion and can operate at near-unity power factor. The validity of the proposed inverter is verified through simulation and implemented in a prototype. The experimental results are compared with a conventional single-phase multistring three-level grid-connected PWM inverter.
机译:本文介绍了一种具有新颖脉宽调制(PWM)控制方案的并网光伏系统的单相多串五级光伏(PV)逆变器拓扑。三个光伏串以并联配置层叠在一起,并连接到五级逆变器以产生五级输出电压:零,$ + 1 / 2V_ {rm dc} $,$ V_ {rm dc} $,$-1 / 2V_ {rm dc} $和$ -V_ {rm dc} $。两个参考信号彼此相同,其偏移等于三角形载波信号的幅度,用于生成开关的PWM信号。 DSP TMS320F2812与数字比例积分电流控制算法一起用于实现此PWM开关方案。逆变器提供的总谐波失真要小得多,并且可以在接近统一的功率因数下运行。通过仿真验证了所提出逆变器的有效性,并在原型中实现。将实验结果与传统的单相多串三电平并网PWM逆变器进行了比较。

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