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Analysis, design and simulation of digital controlled symmetrical seven levels inverter

机译:数控对称七电平逆变器的分析,设计与仿真

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An analysis, design and simulation of digital controlled symmetrical seven levels inverter is presented in this paper. Against the contemporary use of two asymmetrical DC sources with two H-bridge cells to generate seven levels inverter two DC sources of equal voltage ratings are used through digital control strategy to realize seven levels output voltage. By utilizing limited number of active switching components and avoiding the usual complex PWM control techniques for multilevel inverters by way of digital control strategy, high efficiency multilevel inverter systems due to reduction in total harmonic distortion and switching losses is guaranteed. Owing to symmetry of the H-bridge cells, a simple and single programmed counter built around J-K flip is required irrespective of number of cascades. The analyzed and designed system has been simulated in MATLAB/SIMULINK environment. With an R-L load of 200 Ω and 200 mH, improved total harmonic distortions (THDs) for the inverter current and voltage are 7.59% and 16.89% respectively. The obtained results show that the control-circuit-based multilevel inverter topology is most suited for applications in solar powered inverter systems.
机译:本文对数控对称七电平逆变器进行了分析,设计和仿真。与当前使用带有两个H桥单元的两个非对称直流电源来生成七个电平的逆变器相反,通过数字控制策略使用两个额定电压相同的直流电源来实现七个电平的输出电压。通过使用数量有限的有源开关组件,并通过数字控制策略避免了多电平逆变器通常使用的复杂PWM控制技术,可确保由于降低总谐波失真和开关损耗而形成的高效多电平逆变器系统。由于H桥单元的对称性,无论级联数目如何,都需要一个围绕J-K翻转建立的简单且单个编程的计数器。分析和设计的系统已在MATLAB / SIMULINK环境中进行了仿真。 R-L负载为200Ω和200 mH时,逆变器电流和电压的总谐波失真(THD)分别提高了7.59%和16.89%。所得结果表明,基于控制电路的多电平逆变器拓扑最适合于太阳能逆变器系统中的应用。

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