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Deadbeat predictive direct power control of interleaved buck converter-based fast battery chargers for electric vehicles

机译:用于电动车辆的交错转换器的互动预测直接电源控制

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This paper presents a deadbeat predictive direct power control (DB-DPC) scheme for a fast battery charger to improve its dynamic performance and stability. Recently, battery chargers have been adopting paralleled multi-leg converters based on silicon carbide (SiC) devices to increase power capacity, which reduces the charging duration. However, the inherent instability of the battery is regarded as a crucial issue during the fast charging process. Therefore, the proposed DB-DPC provides a stable steady state since it includes real-time estimation of the variable battery impedance. Furthermore, the DB-DPC effectively minimizes the rising and settling time, which demonstrates fast-dynamic response characteristics when compared to proportional-integral (PI) control. The control performance is verified by various simulation and experimental results.
机译:本文提出了一种用于快速电池充电器的防止预测直接电源控制(DB-DPC)方案,以提高其动态性能和稳定性。最近,电池充电器一直在采用基于碳化硅(SIC)器件的并联多腿转换器,以提高功率容量,从而降低充电持续时间。然而,在快速充电过程中,电池的固有不稳定性被认为是一个重要问题。因此,所提出的DB-DPC提供了稳定的稳态,因为它包括可变电池阻抗的实时估计。此外,与比例积分(PI)控制相比,DB-DPC有效地最小化了上升和稳定时间,这证明了快速动态响应特性。通过各种仿真和实验结果验证控制性能。

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