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Galvanic Isolation and Output LC Filter Design for the Low-Voltage DC Customer-End Inverter

机译:低压直流用户端逆变器的电流隔离和输出LC滤波器设计

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In this paper the need for a better design of the galvanic isolation and the output filter inductor in the customer-end inverter (CEI) of the low voltage DC (LVDC) network is discussed. The galvanic isolation can be implemented either with a 50 Hz transformer after the CEI or with an isolated DC-DC converter between the DC network and the CEI. However, the 50 Hz transformer solution adds a significant amount of volume and mass to the system. Based on calorimetric measurements conducted with the current system in which the galvanic isolation is implemented with the former method, the minimum requirements for the isolated DC-DC converter are presented and a comparison is carried out. For the system to be cost efficient the DC-DC converter should result in reduced lifetime cost compared with the transformer solution. In the output filter part a design method for an amorphous core filter inductor based on minimization of the lifetime cost is presented.
机译:本文讨论了对低压直流(LVDC)网络的客户逆变器(CEI)中的电隔离和输出滤波电感器进行更好设计的需求。电流隔离可以通过CEI之后的50 Hz变压器实现,也可以在DC网络和CEI之间采用隔离的DC-DC转换器实现。但是,50 Hz变压器解决方案为系统增加了大量的体积和质量。基于在使用前一种方法实现电流隔离的当前系统上进行的量热测量,提出了隔离式DC-DC转换器的最低要求,并进行了比较。为了使系统具有成本效益,与变压器解决方案相比,DC-DC转换器应减少使用寿命成本。在输出滤波器部分中,提出了一种基于寿命成本最小化的非晶核滤波器电感器的设计方法。

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