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Avoidance High-Frequency Chattering Second-Order Sliding Mode Controller Design: Buck Converter in Wind Power System

机译:避免高频颤振二阶滑模控制器设计:风力发电系统中的降压转换器

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This paper mainly discussed a method of high-frequency second-order sliding mode control for Buck converter in wind power systems. Because the wind energy of nature is always unpredictable and intermittent, the robust control such as sliding mode control is adopted in past literatures. In order to remove the high frequency chattering problem when the traditional sliding mode achieves convergence, the second order sliding mode algorithm is reviewed firstly. Meanwhile, the Buck converter taken as a step-down converter is usually adopted in wind power system, because of its simple structure and good linearity. Under those conditions, the second order sliding mode controller is designed based on Buck converter, especially in high-power wind generation system. The experimental results illustrate that the theory of second order sliding mode can be used in high-power Buck converter. It provides one novel avoidance high frequency chattering method for the technology development of new energy generation system.
机译:本文主要讨论了风力发电系统中Buck变换器的高频二阶滑模控制方法。由于自然风能总是不可预测且断断续续的,因此在过去的文献中采用了鲁棒控制,例如滑模控制。为了消除传统滑模达到收敛时的高频颤动问题,首先对二阶滑模算法进行了综述。同时,由于其结构简单,线性度好,在风力发电系统中通常采用降压变换器作为降压变换器。在这种情况下,特别是在大功率风力发电系统中,基于Buck变换器设计了二阶滑模控制器。实验结果表明,二阶滑模理论可用于大功率降压变换器。为新能源发电系统的技术发展提供了一种新颖的回避高频颤振方法。

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