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A New 15-Level Inverter Configuration with Fault Tolerant Capability for PV Applications

机译:一种新的15级逆变器配置,具有PV应用的容错能力

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Power generation using PV systems is becoming more popular due to lack of availability of fossil fuels. As power generated with PV system is DC, inverters are required to convert it into AC quantity. Conventional two-level inverters are popularly used in this application. But, the output voltage of these inverters contains more harmonic component which will deteriorates lifetime of the load. Moreover, if any one switch of two-level inverter fails, entire system has to be shutdown. To overcome these disadvantages, a novel 15-level inverter is proposed in this paper. The proposed inverter configuration is developed by using three isolated DC sources, six two-quadrant switches and four four-quadrant switches. Hence, this inverter requires only ten switching devices which is very less number compared to number of switches required in conventional 15-level inerter. As availability of isolated dc sources are common in case of different PV system modules, three dc sources can be easily obtained. The proposed inverter is simulated in MATLAB/Simulink and results are presented. The analysis is carried to study the behavior of the inverter during the failure of some switching devices and Dc sources. This configuration can be extended to get more number of voltage levels by cascading proposed inverter units.
机译:由于缺乏化石燃料的可用性,使用光伏系统的发电变得越来越受欢迎。随着使用光伏系统产生的电源为DC,需要转换为交流量的逆变器。传统的两级逆变器普遍用于本申请中。但是,这些逆变器的输出电压包含更多的谐波分量,这将使负载的寿命劣化。此外,如果两个级逆变器的任何一个开关都失败,则必须关闭整个系统。为了克服这些缺点,本文提出了一种新颖的15级逆变器。通过使用三个隔离的DC源,六个双象限开关和四个四象限开关开发了所提出的逆变器配置。因此,该逆变器仅需要十个开关装置,其与传统的15级活动中所需的开关数相比非常较少。由于在不同的PV系统模块的情况下,隔离直流源的可用性是常见的,可以容易地获得三个DC源。所提出的逆变器在Matlab / Simulink中模拟,并呈现了结果。携带分析以研究逆变器在一些开关装置和DC源失败期间的行为。可以扩展该配置以通过级联提出的逆变器单元获得更多数量的电压电平。

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