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Analysis, modeling and simulation of step up converter using Matlab-Simulink and simplorer

机译:使用Matlab-Simulink和simplorer进行升压转换器的分析,建模和仿真

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The basic configuration of step up converter usually used in photovoltaic solar systems to increase the DC voltage generated at their outputs suffers from some drawbacks just like high ripple in the output voltage, greater losses in the system and unstable dynamic behavior. To eliminate these drawbacks, this paper introduces a two-phase connection of step up converter with uncoupled smoothing reactors. Detailed analysis, simulation and control strategy have been proposed in this paper to investigate the advantages of using such connection with uncoupled reactors. This paper is intended to prove that two-phase connection with uncoupled reactors helps increasing the output power of the converter, minimizing its output ripple and making its control easier and more efficient. It also increases the converter chopping frequency and consequently decreases the size of smoothing reactors and filters used in the system. Concerning the design of such converters, it requires a long working period of time with a significant cost and specific technical tests at nominal operating points. Therefore, simulation can essentially decrease economic and development costs. Using modulation and simulation software techniques (Simplorer, Simulink, and Matlab) throughout this paper helped simulation of very fast the converter behavior and accurate determination of its dynamic characteristics. Moreover, the paper deals with modulation of voltage control technique using Matlab and Simplorer, thus regulating the converter output current and voltage. Simulation results show that this control technique provides robust output current and voltage of step up converters and is more feasible for their chopper up conversion technique.
机译:通常用于光伏太阳能系统中以提高其输出端产生的DC电压的升压转换器的基本配置具有一些缺点,例如输出电压中的高纹波,系统中的更大损耗以及不稳定的动态行为。为了消除这些缺点,本文介绍了升压转换器与未耦合的平滑电抗器的两相连接。本文提出了详细的分析,仿真和控制策略,以研究将这种连接与非耦合电抗器一起使用的优势。本文旨在证明,采用非耦合电抗器的两相连接有助于增加转换器的输出功率,最大程度地减小其输出纹波,并使控制更轻松,更高效。它还会增加转换器的斩波频率,从而减小系统中使用的平滑电抗器和滤波器的尺寸。关于这种转换器的设计,它需要很长的工作时间,并且成本很高,并且需要在额定工作点上进行特定的技术测试。因此,仿真可以从根本上降低经济和开发成本。本文通篇使用调制和仿真软件技术(Simplorer,Simulink和Matlab)来帮助非常快速地仿真转换器行为并准确确定其动态特性。此外,本文利用Matlab和Simplorer处理电压控制技术的调制,从而调节转换器的输出电流和电压。仿真结果表明,该控制技术提供了稳健的升压转换器输出电流和电压,对于其斩波转换技术更为可行。

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