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Non-Isolated High Step Up in Voltage DC DC Converter Topology for Renewable Applications

机译:用于可再生应用的电压DC DC转换器拓扑中的非隔离式高步骤

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In the class of the boost converters, the conventional DC-DC boost converters are in common practice but their limited boost capabilities at higher duty ratios are one of the concerns. The isolated and non-isolated step-up DC-DC converters are one of the remedies of the above issue. The presence of switched inductor and switched capacitors in the circuit of non-isolated configuration can provide considerable step-up in voltage at the output, and also facilitate lower voltage stress on components. In this paper, work has been done to propose three non-isolated high-voltage gain DC-DC boost converter topologies. Along with the high voltage gain, the topologies also have lesser voltage stress across the active power switches and diodes used in topologies. The proposed topologies are suitable for low de input levels like renewable sources, microgrid and grid-connected applications. A Matlab/Simulink 2017a environment is utilized to derive, design and simulate the proposed topologies for a 100-W load operation. The basic topology is also realized in hardware as a prototype circuit with 100-W resistive load, operated at 50 kHz switching frequency.
机译:在升压转换器的类中,传统的DC-DC升压转换器是常见的实践,但它们在较高占空比下的升压能力是较高的担忧之一。隔离和非隔离的升压DC-DC转换器是上述问题的补救措施之一。非隔离配置电路中的开关电感器和开关电容的存在可以在输出处提供相当大的升压,并且还促进对部件上的较低电压应力。在本文中,已经完成了工作,提出了三种非隔离的高压增益DC-DC升压转换器拓扑。随着高电压增益,拓扑在拓扑中使用的有源电源开关和二极管上的电压应力也具有较小的电压应力。所提出的拓扑适用于低DE输入水平,如可再生源,微电网和网格连接的应用。 MATLAB / SIMULINK 2017A环境用于导出,设计和模拟所提出的拓扑,用于100 W负载操作。基本拓扑结构也以硬件作为具有100W电阻负载的原型电路实现的基本拓扑,以50kHz开关频率为操作。

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