A narrative 3-phase 9-level voltage source inverter

M. Selvaperumal, D. Kirubakaran
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Abstract

A tale technique for a 3-stage nine-level voltage source inverter utilizing sixteen switches is presented. The given system utilizes ordinary 3-stage scaffolds of two-level as a diode braced model. A DC interface voltage is provided so that the fell H-connect produces the nine voltage levels. The exchanging designs are expressed as the levels expand then the example is hard to create three-stage yields with key balance procedures. Here an answer for an a-level inverter to create required voltage-level with less power electronic parts by setting up in the look-into tables. This investigation diagrams the correlations between nine-level voltage source inverters in various arrangements and proposed novel, sixteen switch three-stage inverter structured with a smaller number of intensity electronic parts and reenacted in MATLAB/Simulink.
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一种叙述性的三相九电平电压源逆变器
介绍了一种采用16个开关的三级九电平电压源逆变器的控制技术。所述系统采用普通的三级双电平支架作为二极管支撑模型。提供直流接口电压,使下降的h -连接产生9个电压等级。交换设计是随着水平的扩大而表示的,那么这个例子很难用关键的平衡程序来创建三级收益率。这里有一个a级逆变器的答案,通过设置在查找表中使用更少的电力电子部件来创建所需的电压水平。本研究绘制了各种布置方式下9级电压源逆变器之间的相关性图,并提出了一种新型的16开关三级逆变器,其结构具有较少的强度电子部件,并在MATLAB/Simulink中进行了再现。
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来源期刊
International Journal of Power Electronics and Drive Systems
International Journal of Power Electronics and Drive Systems Energy-Energy Engineering and Power Technology
CiteScore
3.50
自引率
0.00%
发文量
0
期刊介绍: International Journal of Power Electronics and Drive Systems (IJPEDS) is the official publication of the Institute of Advanced Engineering and Science (IAES). The journal is open to submission from scholars and experts in the wide areas of power electronics and electrical drive systems from the global world. The scope of the journal includes all issues in the field of Power Electronics and drive systems. Included are techniques for advanced power semiconductor devices, control in power electronics, low and high power converters (inverters, converters, controlled and uncontrolled rectifiers), Control algorithms and techniques applied to power electronics, electromagnetic and thermal performance of electronic power converters and inverters, power quality and utility applications, renewable energy, electric machines, modelling, simulation, analysis, design and implementations of the application of power circuit components (power semiconductors, inductors, high frequency transformers, capacitors), EMI/EMC considerations, power devices and components, sensors, integration and packaging, applications in motor drives, wind energy systems, solar, battery chargers, UPS and hybrid systems and other applications.
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