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Bidirectional three-level DC-DC converters: Sum-difference modeling and control

机译:双向三级DC-DC转换器:SUM差异建模和控制

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This paper proposes a modeling and control approach for the three-level DC-DC converter. The converter is described in a sum and difference (ΣΔ) framework. It is shown that the formulation is useful to model the inverter and derive design-specific equations. The Σ component is responsible for the inductor current, i.e. the power flow, and the Δ component is used to balance (or unbalance) the DC-link capacitor voltages. It is shown that there are cross-coupling terms between the Σ and Δ axes that can be compensated. The proposed model is validated using high fidelity simulations with a proportional-integral controller. Two- and three-level converter operation is shown and it is proven that the passive components can be reduced by 50% to 75% using three-level operation without affecting the control performance. The control is verified by introducing load current and DC voltage steps.
机译:本文提出了三级DC-DC转换器的建模与控制方法。转换器描述于总和和差异(ΣΔ)框架中。结果表明,该配方可用于模拟逆变器和衍生设计特定方程。 Σ分量负责电感器电流,即电力流量,Δ分量用于平衡(或不平衡)DC链路电容器电压。结果表明,在可以补偿的σ和Δ轴之间存在交叉耦合术语。使用具有比例整体控制器的高保真模拟验证所提出的模型。示出了两级和三级转换器操作,并证明了无源组件可以使用三级操作减少50×%至75 %,而不会影响控制性能。通过引入负载电流和直流电压步骤来验证控制。

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