具有鲁棒电压转换增益的对称cllc型DAB变换器的群智能辅助参数设计

Fanfan Lin, Xin Zhang, Xinze Li
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引用次数: 1

摘要

对称型cllc型DAB变换器以其电流隔离、高功率效率和高功率密度等优点,在直流微电网中作为直流变压器(DCT)越来越受欢迎。作为DCT, cllc型DAB变换器有望调节母线上的直流电压并保持稳健的电压转换增益(VCG)。然而,由于电感和电容的实用值会随着温度和工作功率的变化而波动,cllc型DAB变换器的VCG可能会偏离设计值,对电源产生负面影响。为此,本文提出了一种基于群体智能的cllc型DAB变换器参数设计方法,以保证其对电感和电容波动的鲁棒性。在该设计方法中,采用粒子群优化(PSO)算法,简化了设计过程,具有较高的精度和计算速度。最后,通过实验验证了所提设计方法的有效性。
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Swarm Intelligence Aided Parameter Design for the Symmetrical CLLC-Type DAB Converter with Robust Voltage Conversion Gain
The symmetrical CLLC-type DAB converter has become more popular as a DC transformer (DCT) in the DC microgrid for its galvanic isolation, high power efficiency and high power density. As a DCT, the CLLC-type DAB converter is expected to regulate the DC voltages on the bus and keep a robust voltage conversion gain (VCG). However, because of the practical values of the inductors and capacitors may fluctuate with varying temperature and operating power, VCG of the CLLC-type DAB converter may deviate from the designed one, negatively affecting power supplies. Therefore, this paper proposes a swarm intelligence aided parameter design approach for the CLLC-type DAB converter to ensure its robust VCG against fluctuating inductors and capacitors. In this design approach, the particle swarm optimization (PSO) algorithm is adopted to facilitate design process with high accuracy and computational speed. Finally, the effectiveness of the proposed design approach has been verified with experiments.
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