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Digital QFT robust control of DC-DC current-mode converters

机译:DC-DC电流模式转换器的数字QFT鲁棒控制

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A new digital robust control law for dc-dc converters is analyzed and implemented in this paper. The robust control QFT technique, which has been successfully used with analog implementations, has been adapted to the digital domain. Concretely, this paper considers the design of a power conditioning unit, which must take into account the uncertainty of the converter, as the conduction mode, the load, the input voltage or the storage elements while assuring that the specifications of a well-known standard are met. The robust control has been implemented by means of a digital device. The sampling frequency is a critical parameter for this kind of system which exhibits fast dynamics. The paper shows a procedure to analyze the minimum sampling frequency of the regulation loop. The procedure consists of transforming an standard analog QFT design to a digital controller by means of an accurate transformation from the s to z domain. After this transformation, we assure the robust stability of the converter by means of the Kharitonov theorem. This approach allows the designer to avoid iterations while finding an appropriate sampling frequency. The experimental prototype has been implemented by means of a FPGA device where the sampling frequency is 100 kHz for a buck power stage with a switching frequency of 200 kHz. The experimental results that are in good agreement with theoretical derivations.
机译:本文分析并实现了一种新的针对DC-DC转换器的数字鲁棒控制律。稳健的控制QFT技术已成功地与模拟实现方式结合使用,现已适应数字领域。具体而言,本文考虑了功率调节单元的设计,该设计必须考虑转换器的不确定性,将其作为传导模式,负载,输入电压或存储元件,同时还要确保采用众所周知标准的规范被满足。鲁棒控制已通过数字设备实现。采样频率是这种具有快速动态特性的系统的关键参数。本文显示了分析调节环路的最小采样频率的过程。该过程包括通过从s域到z域的精确转换,将标准的模拟QFT设计转换为数字控制器。进行此转换后,我们通过Kharitonov定理确保转换器的鲁棒稳定性。该方法允许设计人员在找到合适的采样频率时避免迭代。实验原型是通过FPGA器件实现的,其中降压功率级的采样频率为100 kHz,开关频率为200 kHz。实验结果与理论推导吻合良好。

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