Modeling, Simulation and Design of Luo Converter for DC Micro Grid Application

A. Amudha, M. Ramkumar, V. Vijayalakshmi, G. Emayavaramban, V. Mansoor, S. Divyapriya, P. Nagaveni
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引用次数: 10

Abstract

The present work describes modelling, simulation and configuration of the Dual Loop Controller for the CCD Microgrid Operation of the Positive Performance Super Lift Luo Converters (POESLLC). The incorporation of green energy sources makes DC microgrids exciting. The super lifting Luo Converters is key in connecting a DC source in the DC microgrids, due to the low power rates of these DC sources. Traditional boost converters, buck converters and buck boost converters produced lower voltage transmission gain and ribs. POESLLC is recommended for DC micro grid applications in order to solve these issues. Dual loop controller regulates the output voltage and the inductor current of the converter The PI controller is the external voltage loop for the load voltage controlling and the P controller is the internal current loop for the inductor current control. By designing the MATLAB / SIMULINK model under various operating conditions, the dual loop controller of POESLLC is checked. Such converters could be included in electronic power courses to support graduate students and graduate students in their exploration of their knowledge in the field of application.
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直流微电网用Luo变换器的建模、仿真与设计
本文描述了正性能超级升力罗变流器(POESLLC) CCD微网运行双回路控制器的建模、仿真和配置。绿色能源的结合使得直流微电网令人兴奋。由于这些直流电源的低功率率,超级提升罗变流器是在直流微电网中连接直流电源的关键。传统升压变换器,降压变换器和降压升压变换器产生较低的电压传输增益和肋。为了解决这些问题,建议在直流微电网应用中使用POESLLC。双环控制器调节变换器的输出电压和电感电流,PI控制器为负载电压控制的外电压环,P控制器为电感电流控制的内电流环。通过设计各种工况下的MATLAB / SIMULINK模型,对POESLLC双环控制器进行了校核。这种转换器可以列入电子电力课程,以支持研究生和研究生探索他们在应用领域的知识。
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