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Variable sampling frequency in iterative learning current Control for Shunt Active Filter in aircraft power systems

机译:飞机电力系统并联有源滤波器迭代学习电流控制中的可变采样频率。

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This paper investigates the feasibility of an Iterative Leaning current Control (ILC) with variable sampling frequency to realize a 3-phase Shunt Active Filter (SAF) used for harmonic compensation in new generation aircrafts, where a Variable Speed Variable-Frequency (VSVF) power system, typically between 360 and 900Hz, is nowadays used. Due to the high supply frequency, such applications are particularly demanding for both power and control devices, requiring control capabilities even for frequencies up to several kHz. Furthermore variable supply frequency leads to variable frequency harmonics in the aircraft grid that are challenging to track and compensate. An original and effective solution based on an iterative learning control approach, where both the number of samples per period and the sampling frequency are changed, is studied and implemented. Experimental results confirm the validity of the proposed solution.
机译:本文研究了具有可变采样频率的迭代倾斜电流控制(ILC)的可行性,以实现用于新一代飞机的谐波补偿的三相并联有源滤波器(SAF),其中,变速可变频率(VSVF)功率现在使用的系统通常在360至900Hz之间。由于电源频率高,因此此类应用对电源和控制设备特别有要求,即使对于高达几kHz的频率也要求控制能力。此外,可变的电源频率会导致飞机电网中的可变频率谐波,这很难跟踪和补偿。研究并实现了一种基于迭代学习控制方法的新颖有效的解决方案,该方法改变了每个周期的样本数和采样频率。实验结果证实了所提出解决方案的有效性。

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