双有源桥式DC-DC变换器的超扭滑模控制

Nishit Tiwary, V. N, A. Panda, R. Lenka, A. Narendra
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引用次数: 4

摘要

针对隔离型DC-DC双向双有源桥(DAB)功率变换器,提出了一种新的超扭滑模控制方法,以提高输出电压的稳压性。滑模控制(SMC)以其对非线性系统的鲁棒性和改进的动力学特性而闻名。然而,它也存在高频抖振和跟踪性能下降的缺点。所提出的超扭转滑模控制(ST-SMC)方案结合了滑模控制器的优点,并消除了抖振问题。因此,提高了直流电压稳定性和高鲁棒性,可以实现精确的参考电压跟踪。DAB转换器的输出电压取决于通过变压器传输的功率。传递的功率是两个h桥电压波形相移的函数。通过本文提出的ST-SMC控制器,利用DAB变换器的输出电压动态方程和功率传递方程计算相移比。该方案为DAB变换器的性能提供了鲁棒性控制和改进的参考电压跟踪。在MATLAB-Simulink环境下,对所提出的ST-SMC方案进行了仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Super Twisting Sliding Mode Control of Dual Active Bridge DC-DC Converter
This paper presents a new super twisting sliding mode control for the isolated DC-DC bi-directional dual active bridge (DAB) power converter for enhanced output voltage regulation. The sliding mode control (SMC) is well known for its robustness and improved dynamics for non-linear systems. Still, it includes the drawback of high-frequency chattering and degradation of tracking performance. The suggested super twisting sliding mode control (ST-SMC) scheme incorporates the advantages of a sliding mode controller and eliminates the problem of chattering. Thus, improved dc-link voltage stability and high robustness for accurate reference voltage tracking are obtained. The output voltage in the DAB converter depends upon the power transferred through the transformer. The transferred power is a function of the phase shift of the voltage waveform of two H-bridges. The phase shift ratio is computed through the ST-SMC controller presented here utilizing the output voltage dynamic equation and power transfer equations for DAB converter. The proposed scheme which provides a robust control and an improved reference voltage tracking to the DAB converter performance. The proposed ST-SMC scheme is validated by simulation for 1 kW DAB converter in MATLAB-Simulink environment.
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