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An Adaptive Nonlinear Current Observer for Boost PFC AC/DC Converters

机译:Boost PFC AC / DC转换器的自适应非线性电流观测器

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Power factor correction (PFC) is an essential part of ac/dc converters in order to improve the quality of the current drawn from the utility grid. The PFC closed-loop control system requires a precise measurement of the boost inductor current in order to tightly shape the input current. Current sensors are widely used in the PFC closed-loop control system to measure the boost inductor current. Current sensors introduce delay and noise to the control circuitry. Also, they significantly contribute to the overall cost of the converter. Therefore, they make the implementation of the PFC converter complicated and costly. Current sensorless control techniques can offer a cost-effective solution for various applications. The unique structure of the boost PFC converter makes it challenging to robustly estimate the inductor current due to the nonlinear structure of the converter. Also, it is shown in this paper that the system loses observability at some singular operating points, which makes the observer design more challenging. In addition, the load value is unknown in most applications. Thus, the observer should be able to estimate the inductor current in the presence of uncertainties in the load and other parameters. This paper presents an adaptive nonlinear observer for the boost PFC, which is able to accurately estimate the inductor current. The adaptive structure of the converter allows the robust and reliable performance of the observer in the presence of parameter uncertainties, particularly load variations. Also, an auxiliary compensation is integrated into the observer to circumvent the singular operating points and provide a precise estimation for the entire range of operation. Experimental results are presented to verify the feasibility of the proposed sensorless control approach.
机译:功率因数校正(PFC)是AC / DC转换器的重要组成部分,目的是提高从公用电网汲取的电流的质量。 PFC闭环控制系统需要对升压电感器电流进行精确测量,以紧密调整输入电流。电流传感器广泛用于PFC闭环控制系统中,以测量升压电感器电流。电流传感器将延迟和噪声引入控制电路。而且,它们极大地影响了转换器的总成本。因此,它们使PFC转换器的实现复杂且成本高昂。当前的无传感器控制技术可以为各种应用提供经济高效的解决方案。由于转换器的非线性结构,升压PFC转换器的独特结构使其难以可靠地估计电感器电流。此外,本文表明,该系统在某些奇异的操作点上失去了可观察性,这使观察者的设计更具挑战性。另外,在大多数应用中,负载值是未知的。因此,观察者应该能够在负载和其他参数存在不确定性的情况下估算电感电流。本文提出了一种用于升压PFC的自适应非线性观测器,该观测器能够准确估算电感器电流。转换器的自适应结构允许在存在参数不确定性(尤其是负载变化)的情况下,使观察者具有强大而可靠的性能。而且,辅助补偿器集成到观察者中,以规避奇异的操作点,并为整个操作范围提供精确的估计。实验结果证明了该方法的可行性。

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