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Single DC Source Fed Cascaded Multilevel Inverter along with AC L-C-L Resonant Converter for High Current and Low Voltage Applications

机译:单直流电源馈电级联多电平逆变器以及交流L-C-L谐振转换器,适用于高电流和低压应用

摘要

In the beginning, the power supplies employed in very low voltage and high current application such as arc welding, electroplating process. But in this power supplies use in line frequency step-down transformers and rectifier based control circuits, which has the demerits of large size, inefficient, high output ripple and more operational costs. So there is need to improve the power supplies for high current and low voltage applications. Recently, an efficient and switched-mode power supply (SMPS) suited for low voltage and very high current applications. In this uses a multi-level inverter (MLI) to convert line frequency input waveforms to high frequency for reduce the loss and cost. In the present work, we investigate different types of MLI, they are diode clamped MLI, flying capacitor MLI and cascaded H-bridge MLI, and finally proposed a new topology is single DC source fed CML by using single-phase transformers. The output of MLI feeds an AC L-C-L resonant converter and it behave as constant current source and it can reduce the peak-to-peak output ripple, total harmonic distortion (THD). The output stage of AC L-C-L resonant converters consisting of a number of easily constructed planar transformers with center tapped secondary side and rectifier circuit. The planar transformer gives significant advantage leakage inductance, skin effect and winding capacitance can be minimized and also provide isolation at the output side. The proposed structure is modeled and the simulated results are presented to verify its performance.
机译:最初,电源用于极低电压和高电流的应用中,例如电弧焊,电镀工艺。但是在这种电源中,使用了线性频率降压变压器和基于整流器的控制电路,这具有体积大,效率低,输出纹波高以及运行成本高的缺点。因此,需要改善用于大电流和低压应用的电源。最近,一种适用于低压和超大电流应用的高效开关电源(SMPS)。在这种情况下,使用多电平逆变器(MLI)将线路频率输入波形转换为高频,以减少损耗和成本。在当前的工作中,我们研究了不同类型的MLI,它们分别是二极管钳位MLI,飞跨电容器MLI和级联H桥MLI,最后提出了一种新的拓扑结构,即使用单相变压器的单DC源馈电CML。 MLI的输出馈入一个AC L-C-L谐振转换器,它充当恒定电流源,并且可以减小峰峰值输出纹波,总谐波失真(THD)。 AC L-C-L谐振转换器的输出级由许多易于构造的平面变压器组成,带有中心抽头的次级侧和整流电路。平面变压器具有显着的优势,漏电感,集肤效应和绕组电容可以最小化,并且在输出侧提供隔离。对提出的结构进行建模,并给出仿真结果以验证其性能。

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    Reddy Polu Madhava;

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  • 年度 2015
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