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Performance analysis of high power converters for renewable energy resources

机译:可再生能源大功率变频器的性能分析

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A structure of 13-level DC Link Multilevel H-Bridge Inverter (DCLMLHBI) is proposed for symmetrical Photo Voltaic (PV) panels. Voltage stress across the inverter switches, Power Spectral Density (PSD), voltage and current harmonics are reduced in the proposed configuration. Compared with conventional 13-level Cascaded Multilevel Inverter (CMLI) configuration, the proposed system configuration is structured with less number of series connected power switches and its gate drive circuits. An existing (Space Vector Pulse Width Modulation) SVPWM switching strategy is reformed and implemented to the DC link switches of the DCLMLHBI. None of the passive components are utilized in the proposed inverter configuration, which highlights the advantages of the proposed system. The performance parameters are investigated through Phase Opposition Pulse Width Modulation (PD-PWM) switching scheme and its results are validated with computer simulation and prototype hardware models.
机译:提出了一种用于对称光伏(PV)面板的13级DC Link多级H桥逆变器(DCLMLHBI)的结构。在建议的配置中,可以降低逆变器开关两端的电压应力,功率谱密度(PSD),电压和电流谐波。与常规的13级级联多电平逆变器(CMLI)配置相比,所建议的系统配置在结构上具有较少数量的串联电源开关及其栅极驱动电路。现有的(空间矢量脉冲宽度调制)SVPWM开关策略已进行了改革,并已实现到DCLMLHBI的DC链路开关。提出的逆变器配置中没有使用任何无源组件,这突出了提出的系统的优点。通过相位相反脉冲宽度调制(PD-PWM)切换方案研究了性能参数,并通过计算机仿真和原型硬件模型验证了其结果。

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