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Adaptive Feedforward Compensation for Voltage Source Disturbance Rejection in DC–DC Converters

机译:DC-DC转换器中电压源干扰抑制的自适应前馈补偿

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Jumping disturbances and large noises in input voltage sources to a power converter can cause substantial excursion of its output voltage even under a well-designed feedback controller. Predictive compensation can achieve improved disturbance rejection and tracking performance in such scenarios, resulting in a two-degree-of-freedom design. While the feedback controller has embedded robustness, designing feedforward controllers, which are open-loop compensators, is challenging due to the fact that converter internal parameters change from aging and variations in operating conditions, and loads themselves are part of the converter dynamics. When converter dynamics change, system performance deteriorates significantly, making adaptation mandatory. By integrating system identification with the feedforward compensator, an adaptive feedforward compensation design is proposed in this brief. Working on a boost dc-dc converter as a typical platform, combined feedback and adaptive feedforward design is explored. The results show that the two-degree-of-freedom adaptive design results in much improved performance in rejecting disturbances from input power sources.
机译:即使在设计合理的反馈控制器下,电源转换器的输入电压源中的跳动干扰和较大噪声也会导致其输出电压发生明显偏移。在这种情况下,预测性补偿可以改善干扰抑制和跟踪性能,从而实现了两自由度设计。尽管反馈控制器具有嵌入式鲁棒性,但由于转换器内部参数会因老化和运行条件的变化而变化,并且负载本身是转换器动力学的一部分,因此设计作为开环补偿器的前馈控制器仍具有挑战性。当转换器动态变化时,系统性能会大大下降,因此必须进行自适应。通过将系统识别与前馈补偿器集成在一起,本文提出了一种自适应前馈补偿设计。在将boost dc-dc转换器作为典型平台工作时,探索了组合反馈和自适应前馈设计。结果表明,两自由度自适应设计在抑制输入电源干扰方面的性能大大提高。

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