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Analysis, Synthesis and Simulation of Compact Two-channel Boost Converter for Portable Equipments Operating with a Battery or Solar Cell

机译:紧凑型两通道升压转换器的分析,综合和仿真,用于带有电池或太阳能电池的便携式设备

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This paper is intended to help engineers and designers of high power industrial application such as engineers of power systems as well as control engineers and designers of very low power industrial applications such as designers of computer motherboards and other microcomputer circuits supplied from alternative energy sources or battery via boost converters. Alternative energy source systems such as solar-cells or photovoltaic systems (PV) are progressively becoming more popular. In these applications, it is often required to convert the generated low DC voltage to a higher variable voltage prior to converting it into an AC to be compatible with the electric grid and common appliances. Usually a boost converter is used to step up the d.c. voltage generated at the outputs of such systems [1]. The basic configuration of boost converters usually used for this purpose suffers from some drawbacks just like high ripple in their output currents and voltages which increases the losses of the system and makes their control complicated and their response to the variation in the input voltage and load parameters unstable. To eliminate these drawbacks, this paper introduces a two-channel boost regulator with uncoupled smoothing reactors. Detailed analysis, design, control strategy and simulation have been proposed in this paper to investigate the advantages of using the two-channel connection with uncoupled smoothing reactors. It has been proved throughout this paper that two-channel configuration of boost converter helps increasing the output power of the converter, filtering out the harmonic content from its output and input, making their control easier and more efficient, increasing the operating frequency of the converter and thus decreasing the size of the components and filters used in the circuit. Moreover, the paper deals with voltage control strategy that usually used for such systems thus to regulate the boost converter to obtain a robust output current and voltage. Simulation results show that voltage mode control technique provides good current and voltage regulation of boost converters and is more feasible for the chopper up conversion technique of these converters.
机译:本文旨在帮助高功率工业应用的工程师和设计师,例如电力系统工程师,以及低功率工业应用的控制工程师和设计师,例如计算机主板和其他由替代能源或电池供电的微计算机电路的设计师。通过升压转换器。诸如太阳能电池或光伏系统(PV)之类的替代能源系统正在逐渐变得越来越流行。在这些应用中,通常需要先将生成的低直流电压转换为较高的可变电压,然后再将其转换为交流电,以与电网和普通电器兼容。通常,使用升压转换器来提高直流电压。在此类系统的输出端产生的电压[1]。通常用于此目的的升压转换器的基本配置具有一些缺点,就像它们的输出电流和电压中的高纹波一样,这会增加系统的损耗,并使它们的控制变得复杂,并对输入电压和负载参数的变化做出响应不稳定。为了消除这些缺点,本文介绍了一种带未耦合平滑电抗器的两通道升压调节器。本文提出了详细的分析,设计,控制策略和仿真,以研究将两通道连接与未耦合的平滑电抗器一起使用的优势。整篇论文都证明,升压转换器的两通道配置有助于提高转换器的输出功率,从其输出和输入中滤除谐波含量,使它们的控制更加容易和高效,从而提高了转换器的工作频率。从而减小了电路中使用的组件和滤波器的尺寸。此外,本文还讨论了通常用于此类系统的电压控制策略,从而调节升压转换器以获得鲁棒的输出电流和电压。仿真结果表明,电压模式控制技术为升压转换器提供了良好的电流和电压调节能力,对于这些转换器的斩波上变频技术更可行。

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