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High gain bidirectional multiport DC to DC converter for DC microgrid

机译:用于直流微电网的高增益双向多端口直流到直流转换器

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摘要

Generally, operating voltage of photovoltaic (PV) arrays are low. To interface such systems with high voltage DC bus, a high gain converter is needed. Moreover, power generated by the PV systems is non-uniform most of the time. Therefore, for this purpose, a battery port is mandatory. Hence, for this application a high gain multi port converter is suitable candidate that increases conversion efficiency with a reduced cost. In this work, a high gain multi port bidirectional DC to DC converter for the DC microgrid application is proposed. Proposed converter has three ports. One for the power source, the second for the battery, the third for the high voltage DC Bus. Converter is analyzed in boost/battery discharging and buck/battery charging mode. Detailed theoretical analysis and operation of the converter is presented. The proposed converter has inter source and bidirectional power flow capability. A gain comparison is performed with its previous counterpart converters. A 744 W converter is simulated in the Matlab to validate the theoretical and operational analysis of the converter. Experimental results are performed using the developed prototype converter and dSPACE (DS-1104) controller.
机译:通常,光伏(PV)阵列的工作电压低。为了将此类系统与高压DC总线接口,需要一个高增益转换器。而且,光伏系统产生的功率在大多数情况下是不均匀的。因此,为此必须使用电池端口。因此,对于该应用,高增益多端口转换器是合适的候选者,其以降低的成本提高了转换效率。在这项工作中,提出了一种用于直流微电网应用的高增益多端口双向直流到直流转换器。建议的转换器具有三个端口。一种用于电源,第二种用于电池,第三种用于高压直流总线。在升压/电池放电和降压/电池充电模式下分析转换器。给出了转换器的详细理论分析和操作。拟议的转换器具有源间和双向功率流能力。与之前的对应转换器进行增益比较。在Matlab中模拟了744 W转换器,以验证转换器的理论和操作分析。使用开发的原型转换器和dSPACE(DS-1104)控制器执行实验结果。

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