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Implementation design of the converter-based galvanic isolation for low voltage DC distribution

机译:基于转换器的低压直流配电电流隔离的实现设计

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In this paper the implementation of the galvanic isolation in the low voltage direct current (LVDC) network is discussed. The galvanic isolation can be implemented either with a 50 Hz transformer located at the customer AC output of the customer-end inverter (CEI) or with an isolated DC-DC converter at the input DC network side of the CEI. However, the former solution results in a significant increase of the volume and mass of the system and has a high amount of no-load losses. Therefore, an isolated DC-DC converter is studied in this paper. Based on calorimetric measurements conducted for the passive 50 Hz transformer, the requirements for the DC-DC converter are set. Selection of the converter topology is carried out and the selected topology is studied by simulations and calculations. The results are compared with the 50 Hz transformer.
机译:本文讨论了在低压直流(LVDC)网络中实现电隔离的方法。可以通过位于客户端逆变器(CEI)的用户AC输出处的50 Hz变压器或位于CEI的输入DC网络侧的隔离DC-DC转换器来实现电流隔离。然而,前一种解决方案导致系统的体积和质量的显着增加,并且具有大量的空载损耗。因此,本文研究了隔离式DC-DC转换器。根据对无源50 Hz变压器进行的量热测量,确定DC-DC转换器的要求。进行转换器拓扑的选择,并通过仿真和计算研究所选的拓扑。将结果与50 Hz变压器进行比较。

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