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Parallel multicell converters for high current: Design of intercell transformers

机译:高电流并联多单元转换器:单元间变压器的设计

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Duality rules show that the multilevel output voltage of series multicell converters transposes in the form of a multilevel input current in parallel converters. However the duality of these families of converter is only partial and parallel converters offer an extra advantage which is multilevel output behavior. When the inductors are coupled together, it is even possible to reduce the ripple of internal quantities, i.e. individual cell currents. The magnetic components at the heart of these converters obey very particular rules and need a specific design procedure. The leakage inductance of this component plays an important part in this design and because it involves flux trajectories in the air it is difficult to predict its value and optimize the design. It is also required to evaluate the core losses, the copper losses and the heat exchange surface to determine which number of cells should be used to minimize total weight. Such a procedure is described and used to compare designs with coupled and uncoupled inductors.
机译:对偶性规则表明,串联多单元转换器的多级输出电压在并联转换器中以多级输入电流的形式转置。然而,这些转换器系列的双重性仅是部分转换器,而并行转换器则具有额外的优势,即多电平输出特性。当电感耦合在一起时,甚至有可能减少内部量的纹波,即单个电池电流。这些转换器的核心磁性组件遵循非常特定的规则,并需要特定的设计程序。该元件的漏感在该设计中起着重要作用,由于它涉及空气中的磁通轨迹,因此很难预测其值并优化设计。还需要评估铁芯损耗,铜损耗和热交换表面,以确定应使用多少个单元以使总重量最小。描述了这样的过程,并将其用于比较具有耦合和未耦合电感器的设计。

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