Research on Electromagnetic Transient Model and Control Strategy of Dual Active Bridge Considering Transformer Core Nonlinearity

Luoping Jiang, Gang Li, Ming Yang, W. Sima, Xiaofeng Wang, Shuai Ding
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Abstract

Dual active bridge (DAB) converters have been widely used in distributed power systems and energy storage equipment. Due to the difference in the characteristics of power electronic devices, sudden changes in load, and changes in power flow, the volt-second balance of the phase-shifted inductor is broken. The sudden change of the phase-shift angle will cause a DC component in the inductor current, which will increase the current stress of the power electronic device. Meanwhile, as the frequency of the switching device increases, the working frequency of the transformer in the DAB also increases, the DC resistance in the high-frequency transformer is small, and the DC component will saturate the transformer when it flows through the transformer. It is necessary to study the suppression measures for the DC component, the parameters of the transformer will change with the degree of saturation, so the accurate modeling of the transformer is necessary for the study of the control strategy. Firstly, obtain the leakage inductance, excitation inductance, resistance and other parameters of the transformer, build a dual active bridge test platform, then obtain the electrical characteristics of the transformer port under the conditions of sudden load changes and power flow changes. Finally Build a model and simulate.
考虑变压器铁心非线性的双有源电桥电磁暂态模型及控制策略研究
双有源桥式(DAB)变换器已广泛应用于分布式电力系统和储能设备中。由于电力电子器件特性的差异、负载的突然变化、潮流的变化,使得相移电感的伏秒平衡被打破。相移角的突然变化会使电感电流中产生直流分量,从而增大电力电子器件的电流应力。同时,随着开关器件频率的增加,DAB中变压器的工作频率也随之增加,高频变压器中的直流电阻较小,直流分量流过变压器时会使变压器饱和。研究直流分量的抑制措施是必要的,变压器的参数会随着饱和程度的变化而变化,因此对变压器进行精确的建模是研究控制策略的必要条件。首先获取变压器的漏感、励磁感、电阻等参数,搭建双有源桥式测试平台,然后获得变压器端口在负载突然变化和潮流变化条件下的电气特性。最后建立模型并进行仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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