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Smart controller for grid stabilization in the optoelectric system

机译:用于光电系统中电网稳定的智能控制器

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The power generated from the optoelectric source in the conversion system and the connected system should satisfy several factors such as high efficiency, less total harmonic distortion, reduced cost, less complexity, better boosting capability, etc. The boosting capability can be achieved by means of single juncture or two juncture architecture in DC-DC boost converter. Among different architecture, the Z-source riven bias inverter controls the parameter on the AC and DC sections. The steady state quantity and the time-varying parameter are regulated by controlling the intonation index. The modulation indexes are framed by digital to look at its supervision theme in grid coupled structure that has certainly not been studied so far. Hence, in this paper, the Z-source riven bias electrical converter modeling has been studied in conjunction with the decoupled space vector modulation as a control technique. The deliberate theme is studied and simulated by using a MATLAB/Simulink model to approve the analysis and simulations.
机译:转换系统和连接的系统中从光电源产生的功率应满足多个因素,例如效率高,总谐波失真更少,成本降低,复杂度更低,增强能力更高等。增强能力可以通过以下方式实现: DC-DC升压转换器中的单结或两结架构。在不同的架构中,Z源分流偏置逆变器控制交流和直流部分的参数。通过控制语调指标来调节稳态量和时变参数。调制指数由数字构成,以查看其迄今为止尚未研究的网格耦合结构中的监视主题。因此,本文结合解耦空间矢量调制作为一种控制技术,研究了Z源分流偏置电变换器的建模。通过使用MATLAB / Simulink模型批准分析和仿真,对故意的主题进行了研究和仿真。

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