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PV Fed Asymmetrical Switched Diode Multi Level Inverter With Minimum Number of Power Electronic Components

机译:PV供给不对称交换二极管多电平逆变器,具有最小电力电子元件数量

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This paper proposes the performance of a Photo Voltaic (PV) system with SEPIC Converter where the switching is controlled by Maximum Power Point Tracking (MPPT) technique connected switched diode Multi Level Inverter (ML!) topology. MLI are suitable in high voltage & high power application due to their ability to synthesize waveforms with better harmonic spectrum. This paper presents (A) the design and study of PV and (B) V-I characteristics of PV system. Then, the output is connected to SEPIC converter and the switching is done by Perturb and Observe (P&O) type MPPT algorithm. Finally, Sinusoidal Pulse Width Modulation (SPWM) based switched diode Multilevel Inverter is connected to this above mentioned system. This switched diode multilevel inverter strategy enhances the fundamental output voltage and reduced total harmonic distortion. The proposed asymmetrical switched diode multilevel inverter is simulated using MATLAB/Simulink and the corresponding results are presented in this paper.
机译:本文提出了光伏(PV)系统与SEPIC转换器的性能,其中通过最大功率点跟踪(MPPT)技术连接开关二极管多电平逆变器(ML!)拓扑控制。由于它们合成具有更好谐波频谱的波形的能力,MLI适用于高压和高功率应用。本文提出(a)PV系统的PV和(B)V-I特性的设计和研究。然后,输出连接到SEPIC转换器,并且通过扰动和观察(P&O)MPPT算法进行切换。最后,正弦脉冲宽度调制(SPWM)的开关二极管多级逆变器连接到上述系统。该开关二极管多级逆变器策略增强了基波输出电压,减少了总谐波失真。使用MATLAB / SIMULINK模拟所提出的不对称开关二极管多级逆变器,并在本文中提出了相应的结果。

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