Islanded dc Microgrid Design Using Non-Isolated Bidirectional Interleaved Half Bridge Converter for Energy Storage Application in a dc Microgrid

Polycarp Odo
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Abstract

This paper presents a performance evaluation of non-isolated bidirectional interleaved DC converter compare to conventional half bridge as an interface between DC bus and battery energy storage system (BESS) for energy storage application in a DC Micro-grid. Islanded DC Micro-grid is implemented using multiple energy storage elements in parallel to ensure redundancy, reliability, and modularity. The conventional Half Bridge converter is compared with the interleaved topology (which is obtained by increasing the phase legs of half bridge) in terms of their frequency response analysis and SoC discharge when employed as interfacing converter between BESS and DC bus. The small signal or frequency response analysis is performed in Plecs using AC sweep, impulse response and multitoned analysis. It is established in this study from the open loop bode diagrams of the converters that the corner frequency of the interleaved is almost two times the half-bridge. This difference affected their SoC discharge when employed in a Micro-grid with the interleaved discharging at a rate almost twice that of half bridge. The interleaved also provides reduced current stress on the switch making it best suited for high power applications. The DC bus is 48V dc with a load power of 400W.
基于非隔离双向交错半桥变换器的孤岛直流微电网储能设计
本文对非隔离双向交错直流变换器作为直流母线与电池储能系统(BESS)的接口在直流微电网中的储能应用进行了性能评价,并与传统半桥变换器进行了比较。孤岛直流微电网采用多个储能单元并联实现,保证了冗余、可靠性和模块化。比较了传统半桥变换器与交错拓扑(通过增加半桥的相位支路得到)作为BESS与直流母线接口变换器时的频率响应分析和SoC放电情况。小信号或频率响应分析在Plecs中使用交流扫描、脉冲响应和多频分析进行。从变换器的开环波德图可以看出,交错的拐角频率几乎是半桥的两倍。当在微电网中使用交错放电时,这种差异影响了它们的SoC放电,放电速率几乎是半桥的两倍。交错也提供了减少电流压力的开关,使其最适合于高功率应用。直流母线为48V直流,负载功率400W。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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