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A Nonreversible 10-kW High Step-Up Converter Using a Multicell Boost Topology

机译:采用多单元升压拓扑结构的不可逆10 kW高升压转换器

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The subject of this paper falls under the development of power electronics for more electric aircraft systems. The study concerns the design of a converter whose function is to generate a 300-V dc bus from a standard 28-V dc avionic network. Various systems, such as motor drives, need to be connected to the 28-V dc network. Their design could be simplified significantly, and standardized, by introducing this intermediate 28–300-V stage. The step-up converter in the proposed configuration is integrated as a part of the system. The power specification is 10 kW, which leads to very high-current values on the 28-V side. The choice of the converter topology, therefore, needs to match this central constraint. The proposed converter uses six boost cells, associated to constitute a series–parallel architecture. This arrangement leads to significantly more optimal sizing for high step-up ratios than conventional boost-cell configurations. Cell interconnection is implemented by means of a monolithic InterCell transformer to reduce the weight of the magnetic part. This paper describes the topology, design, and construction of the lab prototype, as well as experimental results obtained during testing.
机译:本文的主题属于用于更多电动飞机系统的功率电子学的发展。研究涉及转换器的设计,该转换器的功能是从标准的28 V直流航空电子网络生成300 V直流总线。需要将各种系统(例如电动机驱动器)连接到28 V直流网络。通过引入中间的28-300V电压级,可以大大简化和标准化其设计。所提出的配置中的升压转换器被集成为系统的一部分。功率规格为10 kW,这会导致28 V侧的电流值很高。因此,转换器拓扑的选择需要匹配该中心约束。拟议的转换器使用六个升压单元,相关联以构成串联-并联架构。与传统的升压电池配置相比,这种布置可为高升压比带来明显更好的最佳尺寸。单元互连通过单片InterCell变压器实现,以减轻磁性部件的重量。本文介绍了实验室原型的拓扑,设计和构造,以及在测试过程中获得的实验结果。

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