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Analysis of three-level converters with voltage balancing capability in bipolar DC distribution networks

机译:双极直流配电网中具有电压平衡能力的三电平转换器的分析

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The growing number of distributed energy resources, DC loads and energy storage systems drive the adoption of DC distribution networks. This paper in particular addresses three-wire bipolar DC distribution networks (b-DCDN), that provide two voltage levels to connect low- and high-power loads, while transferring twice the amount of power with less conduction losses as compared to the two-wire unipolar network configuration. To stabilize and control these two voltage levels, converters with voltage balancing capability are essential. Although dedicated voltage balancing converters that transfer power between both poles exist, this paper shows the extent to which certain three-level DC-DC converters can both interface DC devices such as battery energy storage systems and balance the pole-to-neutral voltages in the presence of unbalanced currents. More in particular, this paper identifies and analyzes the members of the non-isolated three-level converter family that feature a bipolar DC front-end in different unbalanced conditions, thereby explicitly deriving the operating area of these converters, based upon a decomposition in balanced and unbalanced components. Furthermore, the paper demonstrates the influence of the modulation scheme in unbalanced conditions on the current ripple and required inductance.
机译:分布式能源,直流负载和储能系统的数量不断增长,推动了直流配电网络的采用。本文特别针对三线双极直流配电网(b-DCDN),该网提供了两个电压电平来连接低功率和高功率负载,同时传输的功率量是两线制的两倍,而传导损耗却小于两线制。电线单极网络配置。为了稳定和控制这两个电压电平,具有电压平衡功能的转换器至关重要。尽管存在在两极之间传输功率的专用电压平衡转换器,但本文显示了某些三电平DC-DC转换器可以在多大程度上既可以与电池设备储能系统等DC设备接口,又可以平衡电池中的极对中性电压。存在不平衡电流。更具体地说,本文确定并分析了非隔离三电平转换器系列的成员,这些成员在不同的不平衡条件下具有双极性直流前端,从而基于平衡下的分解来明确推导这些转换器的工作范围和不平衡的组件。此外,本文证明了在不平衡条件下调制方案对电流纹波和所需电感的影响。

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