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Multi-channel simultaneous data acquisition through a compressive sampling-based approach

机译:通过基于压缩采样的方法进行多通道同时数据采集

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Nowadays, a variety of measurement applications require the acquisition and processing of signals coming from many disseminated sensors. To reduce the cost of the overall measurement process, the above-mentioned tasks are typically performed by devices like microcontrollers, low cost data acquisition systems (DASs), field gate programmable arrays (FPGAs), and so on. This is particularly true when smart-sensors or wireless sensor networks are considered. These devices are characterized by some limitations mainly concerning with the reduced internal memory and the use of multiplexing circuits to share the same analog to digital converter (ADC) over different physical channels. The former limitation affects the maximum observation time the devices are able to cover with a single shot acquisition, the latter imposes unwanted phase shifting on the acquired signals. The use of modern acquisition and processing techniques could be of some help. One of the most promising is the compressive sampling (CS), which can assure good signal reconstruction starting from very few acquired samples. To this aim, the paper deals with the definition, implementation and experimental characterization of a CS-based acquisition approach specifically addressed to cost-effective multi-channel DASs, like those characterizing typical 8 or 32-bit microcontrollers. In particular, the paper aims at showing the reliable phase reconstruction capability also in the presence of multiplexed multichannel architectures. A number of tests conducted both on numerical and actual experiments are carried out to assess the performance of the proposed approach. In particular, the results obtained on real data acquired by means of the considered low-cost platforms shows the efficacy of the adopted approach; phase shift as low as few milliradians are, in fact, experienced.
机译:如今,各种测量应用都需要获取和处理来自许多分布式传感器的信号。为了降低整个测量过程的成本,上述任务通常由微控制器,低成本数据采集系统(DAS),现场门可编程阵列(FPGA)等设备执行。当考虑智能传感器或无线传感器网络时,尤其如此。这些设备的特点是存在一些局限性,主要涉及减少内部存储器以及使用多路复用电路在不同的物理通道上共享相同的模数转换器(ADC)。前者的局限性会影响设备通过单次采集能够覆盖的最长观察时间,后者会在所采集的信号上施加不必要的相移。使用现代的采集和处理技术可能会有所帮助。最有前途的方法之一是压缩采样(CS),它可以确保从很少的采集样本开始就可以实现良好的信号重建。为此,本文针对基于CS的采集方法的定义,实施和实验表征,专门针对具有成本效益的多通道DAS(如表征典型的8位或32位微控制器的那些)。尤其是,本文旨在展示在多路复用多通道架构的情况下可靠的相位重建能力。对数值和实际实验都进行了许多测试,以评估所提出方法的性能。尤其是,通过经考虑的低成本平台获取的真实数据所获得的结果表明了所采用方法的有效性;实际上,只有很少的毫弧度相移。

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