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Reduction of the order of anti-aliasing filters in embedded avionics data acquisition

机译:降低嵌入式航空电子数据采集中抗混叠滤波器的阶数

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Research on the applications of compressed sensing has been mainly directed towards sub-Nyquist acquisition of a sparse signal followed by reconstruction, using different recovery algorithms, to get the original signal. In this paper, we present a scheme of compressed acquisition of a set of sparse signals and subsequent reconstruction of the signals at an effective sampling rate which is a multiple of the rated sampling rate of the analog to digital converters employed for data acquisition. We demonstrate that with a higher effective sampling rate the frequency specifications of the front-end anti-aliasing (AA) filter can be relaxed and it is possible to use a lower order AA filter, thereby simplifying the analog design on the embedded board. To verify the proof of concept we test the proposed acquisition architecture for sampling voltages proportional to the deflection of control surfaces of an in-flight aerospace vehicle.
机译:关于压缩感测的应用的研究主要针对稀疏信号的亚奈奎斯特采集,然后使用不同的恢复算法进行重构以获取原始信号。在本文中,我们提出了一种压缩稀疏信号集并随后以有效采样率重构信号的方案,该有效采样率是用于数据采集的模数转换器的额定采样率的倍数。我们证明,以较高的有效采样率,可以放宽前端抗混叠(AA)滤波器的频率规格,并且可以使用较低阶的AA滤波器,从而简化了嵌入式板上的模拟设计。为了验证概念验证,我们测试了拟议的采集架构,该采集架构用于采样与飞行中的航空航天器控制面的偏转成比例的电压。

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