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Design and Analysis of a 24 Vdc to 48 Vdc Bidirectional DC-DC Converter Specifically for a Distributed Energy Application

机译:专用于分布式能源应用的24 Vdc至48 Vdc双向DC-DC转换器的设计和分析

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The design of a bidirectional dc-dc power converter specifically for a distributed energy application is presented. The existing two different DC voltage battery bank of the distributed generation needs to interlink each other using a bi-directional dc-dc converter in order to minimize the unbalance of the output load currents of the three inverters connected to electric grid system. Through this connection, a current can flow from one system to another or vice versa depending on which systems need the current most. Thus, unbalanced currents of the grid line have been minimized and the reliability and performance of the DER grid connected system has been increased. A detailed mathematical analysis of the converter under steady state and transient condition are presented. Mathematical models for boost and buck modes are being derived and the simulink model is constructed in order to simulate the system. Moreover, the model has been validated on the actual operation of the converter, showing that the simulated results in Matlab Simulink are consistent with the experimental ones.
机译:提出了专门用于分布式能源应用的双向DC-DC电源转换器的设计。为了使连接到电网系统的三个逆变器的输出负载电流的不平衡最小,现有的分布式发电的两个不同的DC电压电池组需要使用双向DC-DC转换器彼此互连。通过这种连接,电流可以从一个系统流向另一个系统,反之亦然,这取决于哪个系统最需要电流。因此,电网线的不平衡电流已最小化,DER并网系统的可靠性和性能得到提高。给出了转换器在稳态和瞬态条件下的详细数学分析。推导了升压和降压模式的数学模型,并构建了simulink模型以模拟系统。此外,该模型已在转换器的实际操作上进行了验证,表明在Matlab Simulink中进行的仿真结果与实验结果一致。

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