A New Non-Isolated High Gain DC-DC Converter Suitable for Renewable Energies

Naser Hassan Pour, K. Varesi
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引用次数: 11

Abstract

This paper proposes a new high gain dc-dc converter. The proposed topology has simple control and structure. The input and output (load) current waveforms are continuous. The continuous character of input current of suggested converter candidates it as a suitable choice for application in renewable energy industry, where the Maximum Power Point Tracking (MPPT) can easily be achieved. Usually the transformerless converters suffer from low gain, but the suggested converter has extra high gain, in spite of its non-isolated and non-coupled inductor nature. The gain per number of elements in proposed topology is more than other similar topologies. Despite the high gain, the Normalized Voltage Stress (NVS) on switches/diodes of proposed topology is considerably low. In this paper, the proposed topology has been introduced and its operational modes have been explained. The steady state analysis have also been presented. To assess the proposed topology, it has been contrasted with similar novel topologies. Comparison results validate the advantages of proposed topology. The obtained simulation results (done in PSCAD/EMTDC) confirm the effective operation of proposed topology.
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一种适用于可再生能源的新型非隔离高增益DC-DC变换器
本文提出了一种新型高增益dc-dc变换器。所提出的拓扑具有简单的控制和结构。输入和输出(负载)电流波形是连续的。该变流器输入电流的连续特性使其成为可再生能源行业中易于实现最大功率点跟踪(MPPT)的合适选择。通常情况下,无变压器变换器的增益较低,但建议的变换器具有额外的高增益,尽管其非隔离和非耦合的电感性质。所提出的拓扑中每个元素数量的增益大于其他类似拓扑。尽管具有高增益,但所提出的拓扑结构的开关/二极管上的归一化电压应力(NVS)相当低。本文介绍了所提出的拓扑结构,并对其工作模式进行了解释。本文还介绍了稳态分析。为了评估所提出的拓扑结构,将其与类似的新型拓扑结构进行了对比。比较结果验证了所提拓扑的优越性。仿真结果(在PSCAD/EMTDC中完成)证实了所提出拓扑的有效运行。
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