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Research on Active Disturbance Rejection Control Method for Bidirectional DC-DC Converter Based on Immune Algorithm

机译:基于免疫算法的双向DC-DC变换器有源干扰抑制控制方法研究

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In a specific multi-source disturbance system such as photovoltaic energy storage, the photovoltaic output power change and load mutation may have a great impact on the DC bus voltage, then affect the system stable operation. In order to restrain the DC bus voltage fluctuation, a novel active disturbance rejection control method for bidirectional DC-DC converter based on immune algorithm is proposed in this paper. The immune algorithm is studied on the basis of the immune response system, and then the algorithm realization is analyzed. The immune algorithm is introduced into the active disturbance rejection controller, and the parameters of the expansion state observer and nonlinear feedback control law all can be adjusted online by using the immune algorithm, and the dynamic performance of the system under the condition of multi-source disturbances has been further improved. The experimental results verify the effectiveness of the active disturbance rejection control method for bidirectional DC-DC converter based on immune algorithm.
机译:在特定的多源干扰系统中,例如光伏储能,光伏输出功率的变化和负载突变可能会对直流母线电压产生很大影响,进而影响系统的稳定运行。为了抑制直流母线电压的波动,提出了一种基于免疫算法的双向DC-DC变换器主动抗扰控制方法。在免疫应答系统的基础上研究了免疫算法,然后分析了算法的实现。将免疫算法引入主动扰动抑制控制器中,利用免疫算法可以在线调整扩展状态观测器和非线性反馈控制律的参数,并在多源条件下实现系统的动态性能。干扰得到了进一步改善。实验结果证明了基于免疫算法的双向DC-DC变换器有源抗扰控制方法的有效性。

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