Predictive control of multi-input switched-capacitor DC-DC converter with reduced switching Frequency

M. Khosravi, D. Khaburi, S. Heshmatian
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引用次数: 7

Abstract

In this paper, a high step-up multi-input switched-capacitor DC-DC converter is studied for hybrid renewable energy system applications. A modified model predictive controller is proposed for this converter in order to appropriately track the reference input currents with minimum number of switching actions. In comparison to the classical PI controllers, which are widely used in this application, the proposed controller provides notable advantages such as elimination of additional modulation stages and improving the dynamic and steady state performance. Moreover, designing PI controllers and tuning their parameters is more difficult for a multi-input converter, compared to a single-input one, since the behaviors of the multi-input converter input currents are not independent. However, the conventional predictive control scheme will result in ripple components due to its variable switching frequency performance. Therefore, some modifications are made in the design procedure to overcome the aforementioned problem of the conventional predictive scheme and improve the converter efficiency. Finally, the performance of the designed controller is verified and compared with the conventional predictive control scheme through simulation in MATLB/Simulink environment.
低开关频率多输入开关电容DC-DC变换器的预测控制
本文研究了一种用于混合可再生能源系统的高升压多输入开关电容DC-DC变换器。针对该变换器,提出了一种改进的模型预测控制器,以最小的开关动作数适当地跟踪参考输入电流。与广泛应用于该应用的经典PI控制器相比,该控制器具有显著的优点,例如消除了额外的调制级,提高了动态和稳态性能。此外,与单输入转换器相比,多输入转换器的PI控制器设计和参数调整更加困难,因为多输入转换器的输入电流的行为不是独立的。然而,传统的预测控制方案由于开关频率的变化,会产生纹波分量。因此,在设计过程中进行了一些修改,以克服传统预测方案的上述问题,提高变流器效率。最后,通过matlab /Simulink环境下的仿真,验证了所设计控制器的性能,并与传统的预测控制方案进行了比较。
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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