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A new cascaded multilevel inverter topology with minimum number of conducting switches

机译:一种新型的级联多电平逆变器拓扑结构,具有最少的导电开关

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There are many advantages of the cascaded multilevel inverter such as low voltage stress for each switching device and higher power quality. The main drawback for this type of inverter is the high number of switching device it needs in an installation. In order to reduce total harmonics distortion (THD) of the output voltage waveform, the number of output voltage level need to be increased, hence the higher number of switching devices. This subsequently increases the installation cost, inverter circuit size and power losses — in the form of heat and voltage losses in the inverter circuit. In this paper a new cascaded multilevel inverter topology is proposed with a minimum number of switching devices and driver circuits needed. The proposed new topology also needs to turn on only three switching devices at any operation time for any output voltage level configurations. The new cascaded multilevel inverter topology validity is verified by the simulation and experimental results of a prototype single phase 41-level inverter. The prototype inverter can also be designed to supply a load with a specific power factor requirement.
机译:级联多电平逆变器有很多优点,例如每个开关设备的电压应力低,并且电能质量更高。这种类型的逆变器的主要缺点是安装中需要大量的开关设备。为了减小输出电压波形的总谐波失真(THD),需要增加输出电压电平的数量,因此开关设备的数量更多。随后,这会增加安装成本,逆变器电路尺寸和功率损耗,形式是逆变器电路中的热量和电压损耗。在本文中,提出了一种新的级联多电平逆变器拓扑,其中需要最少数量的开关设备和驱动器电路。对于任何输出电压电平配置,建议的新拓扑还需要在任何操作时间仅打开三个开关设备。通过原型单相41电平逆变器的仿真和实验结果验证了新的级联多电平逆变器拓扑的有效性。原型逆变器还可以设计为提供具有特定功率因数要求的负载。

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