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A novel sliding mode controller for DC-DC boost converters under input/load variations

机译:输入/负载变化下用于DC-DC升压转换器的新型滑模控制器

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In this paper a simple sliding mode controller based on the averaging state space model is proposed for a DC-DC boost converter. It is demonstrated to be easily implemented and has time-variant sliding coefficients. The proposed controller can effectively regulate the output voltage by controlling the switch states (through the dynamic duty cycles) even when the input voltage, load or output command varies. Furthermore the controller is independent of the inductor current and the load, although the load value is needed when designing the sliding coefficients. The constant switching frequency is maintained thus simplifying the design procedure, enhancing the regulation properties and benefiting the filter design. The controller has good dynamic response, overshoot damping and robustness. Comparative simulations are carried in MATLAB/Simulink between the proposed approach and a widely used PID controller to verify the effectiveness and feasibility of the proposed method.
机译:本文提出了一种基于平均状态空间模型的简单滑模控制器,用于DC-DC升压转换器。它被证明易于实施并且具有随时间变化的滑动系数。即使输入电压,负载或输出命令发生变化,所提出的控制器也可以通过控制开关状态(通过动态占空比)来有效地调节输出电压。此外,尽管在设计滑动系数时需要负载值,但控制器与电感电流和负载无关。保持恒定的开关频率,从而简化了设计过程,增强了调节性能,并使滤波器设计受益。控制器具有良好的动态响应,过冲阻尼和鲁棒性。在MATLAB / Simulink中,在所提出的方法和广泛使用的PID控制器之间进行了比较仿真,以验证所提出方法的有效性和可行性。

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