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Principles and Design of an Integrated Magnetics Structure for Electrochemical Applications

机译:电化学应用集成磁性结构的原理与设计

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This article presents an integrated magnetics (IM) structure that functions as a current-doubler rectifier (CDR). The proposed IM-CDR is suitable for electrochemical wastewater treatment applications where low-voltage high-current power converters are required for effective treatment. Electrochemical wastewater treatment is a promising technology that has several advantages compared to the traditional biological methods currently employed in the mining industry. However, the technology suffers from high operating cost due to the conduction losses associated with long cables or busbars that run from the source to the treatment cell carrying high current. The IM approach integrates the transformer and two filtering inductors of the discrete CDR (D-CDR) into one magnetic structure which allows for the secondary side of the structure to be packaged with the electrochemical cell, thus resulting in a HVdc distribution network, and as a result, lowers the conduction losses while still benefiting from the ripple cancellation offered by the CDR architecture. This article presents a design example to help the designer relate the required electrical characteristics of the D-CDR to the design parameters of the IM-CDR. A finite element analysis simulation is performed on the IM structure to validate the derived electrical equivalent model. The IM structure is also experimentally built in our lab, achieving a 97.8% efficiency over a 20-40 A load range.
机译:本文介绍了一种磁磁(IM)结构,其用作电流倍增器整流器(CDR)。所提出的IM-CDR适用于电化学废水处理应用,其中需要低压高电流功率转换器进行有效处理。电化学废水处理是一个有前途的技术,与目前在采矿业目前采用的传统生物方法相比具有若干优势。然而,由于从源与承载高电流的处理单元的长电缆或母线相关的传导损耗,该技术由于传导损耗而遭受高运营成本。 IM方法将离散CDR(D-CDR)的变压器和两个滤波电感器集成到一个磁性结构中,该磁性结构允许与电化学电池封装的结构的次级侧,从而导致HVDC分配网络,以及结果,降低了传导损耗,同时仍然受益于CDR架构提供的纹波消除。本文介绍了一个设计示例,以帮助设计者将D-CDR的所需电气特性与IM-CDR的设计参数相关联。在IM结构上执行有限元分析模拟以验证导出的电力等效模型。 IM结构也是在我们的实验室进行实验构建的,在20-40个负载范围内实现97.8%的效率。

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