基于模型预测控制的DAB变换器返回功率优化策略

Xinwen Zhang, Canlong Wang, F. Gao, Dunwen Song, Xukai Zhu
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引用次数: 0

摘要

双有源全桥(DAB)变换器在传统移相调制下产生的回波功率大,动态特性差。为了解决上述问题,本文提出了一种结合EPS调制的DAB变换器输出电压模型预测和拉格朗日乘法相结合的返回功率优化方法。通过对回程发电机理的深入分析,建立了DAB变换器功率的数学模型。采用状态空间平均法得到DAB变换器输出电压的模型预测方程,采用拉格朗日乘子法抑制返回功率。最后,建立电路模型对分析结论进行验证,并将分析结果与传统的SPS调制和EPS调制进行比较。结果表明,该方法能显著抑制DAB变换器的回波功率,有效改善其输出性能。
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Return power optimization strategy of DAB converter based on model predictive control
Dual active full bridge (DAB) converter produces large return power under traditional phase shift modulation, and its dynamic characteristics are poor. For purpose of solv the above problems, this paper proposes a return power optimization method combining the output voltage model prediction of DAB converter based on EPS modulation and the Lagrange multiplier method. Through in-depth analysis of the mechanism of return power generation, the mathematics model of power of DAB converter is built. The model prediction equation of output voltage of DAB converter is obtained by state space averaging method, and the return power is suppressed by Lagrange multiplier method. Finally, the circuit model is built to verify the analysis conclusion, and these results are compared with those of the traditional SPS modulation and EPS modulation. The results demonstrate that this method can significantly inhibit the return power of the DAB converter, and can effectively improve its output properties.
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