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High‐gain–high‐power (HGHP) DC‐DC converter for DC microgrid applications: Design and testing

机译:用于直流微电网应用的高增益高功率(HGHP)DC-DC转换器:设计和测试

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摘要

The use of green energy sources to feed direct current (DC) microgrids is gaining prominence over traditional centralised alternating current (AC) systems. Direct current microgrids are characterised by the use of intermediate DC-DC converter, which acts as power conditioning units. Hence, the choice of an appropriate DC-DC converter becomes significant as the overall system efficiency is strongly dependent on the converter's performance. This paper proposes a novel high-gain-high-power DC-DC converter for DC microgrid, which is one of the significant steps forward in the development of DC microgrids. The suitability of the proposed high-gain-high-power DC-DC converter is demonstrated by experimental tests of the 60V/1.1kV, 3kW converter; test results validate the converter's suitability for DC distribution. A significant number of performance parameters of the proposed converter are compared with state-of-the-art converter topologies demonstrating the superior capabilities of the proposed converter. This paper also portrays the potential benefits that could be reaped by trending towards DC instead of existing alternating current system. The advantages and challenges to be confronted in the foreseeable future while implementing sustainable DC microgrids are also highlighted. Finally, this paper encapsulates renewable energy fed DC microgrid system as an appropriate, technically feasible, economically viable, and competent solution for efficiently utilising the sustainable energy sources.
机译:与传统的集中式交流电(AC)系统相比,使用绿色能源来馈电直流(DC)微电网正变得日益重要。直流微电网的特点是使用中间DC-DC转换器,该转换器用作功率调节单元。因此,由于整个系统的效率很大程度上取决于转换器的性能,因此选择合适的DC-DC转换器就变得很重要。本文提出了一种用于直流微电网的新型高增益大功率DC-DC转换器,这是直流微电网发展的重要步骤之一。通过60V / 1.1kV,3kW转换器的实验测试证明了所提出的高增益-大功率DC-DC转换器的适用性;测试结果验证了转换器对直流配电的适用性。将拟议转换器的大量性能参数与最新的转换器拓扑进行了比较,从而证明了拟议转换器的卓越功能。本文还描绘了通过趋向直流而不是现有的交流电系统可能获得的潜在利益。还着重指出了在实施可持续的直流微电网时在可预见的未来将面临的优势和挑战。最后,本文将可再生能源馈送的直流微电网系统封装为适当,技术上可行,经济上可行且有效的解决方案,以有效利用可持续能源。

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