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Modelling and analysis of modular multilevel converter for solar photovoltaic applications to improve power quality

机译:用于太阳能光伏应用的模块化多电平转换器的建模和分析,以提高电能质量

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The design of control circuit for a solar fed cascaded multilevel inverter to reduce the number of semiconductor switches is presented in this study. The design includes ‘binary’, ‘trinary’ and ‘modified multilevel connection’ (MMC)-based topologies suitable for varying input sources from solar photovoltaic's (PV). In binary mode, 2 − 1 output voltage levels are obtained where is the number of individual inverters. This is achieved by digital logic functions which includes counters, flip-flops and logic gates. In trinary mode, 3 levels are achieved by corresponding look-up table. MMC intends design in both control and power circuits to provide corresponding output voltage levels by appropriate switching sequences. Hence to obtain a 15-level inverter, the conventional method requires 28 switches and in binary mode 12 switches are needed. In trinary mode with the same 12 switches, 27 levels can be obtained whereas in MMC only 7 switches are employed to achieve 15 levels. The advantage of these three designs is in the reduction of total harmonic distortion by increasing the levels. Simulations are carried out in MATLAB/Simulink and comparisons were made. All the three topologies are experimentally investigated for a 3 kWp solar PV plant and power quality indices were measured.
机译:本研究提出了一种太阳能馈电级联多电平逆变器的控制电路设计,以减少半导体开关的数量。该设计包括基于“二进制”,“三级”和“修改的多级连接”(MMC)的拓扑,适用于来自太阳能光伏(PV)的各种输入源。在二进制模式下,获得2-1个输出电压电平,其中是单个逆变器的数量。这是通过数字逻辑功能实现的,其中包括计数器,触发器和逻辑门。在三进制模式下,通过相应的查找表可以实现3个级别。 MMC打算在控制电路和电源电路中进行设计,以通过适当的开关顺序提供相应的输出电压电平。因此,为了获得15级反相器,常规方法需要28个开关,并且在二进制模式下需要12个开关。在具有相同12个开关的三元模式下,可获得27个电平,而在MMC中,仅使用7个开关即可达到15个电平。这三种设计的优点在于通过增加电平来减少总谐波失真。在MATLAB / Simulink中进行了仿真并进行了比较。对3 kWp太阳能光伏电站的所有三种拓扑进行了实验研究,并测量了电能质量指标。

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