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A noise-cancelling technique for data acquisition systems: A case study on embedded ADCs

机译:用于数据采集系统的噪声消除技术:嵌入式ADC的案例研究

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The noise present in embedded analog-to-digital converter (ADC) of microcontrollers (MCUs) and other System-on-chips (SoCs) is a limiting factor that can impede their use in some application. This noise can be caused due to the proximity between ADCs and digital circuits whose switching couples to the analog signals and degrades the input signal integrity. Moreover, many models of microcontrollers have more than one ADC input channel, and their inputs suffer impairments due to those noise sources. Because the noise source can be the same for all the inputs, the noise is correlated and it can be exploited to increase the signal quality in the digital domain. This paper proposes a novel adaptive noise canceler based on the normalized least mean squares (NLMS) adaptive noise cancellation algorithm. In the proposed technique, three analog inputs of the microcontroller are used, where two are used as reference and one is used for acquiring the desired signal. An experimental setup was implemented for testing the proposed scheme and the results show improvement of more than 20 dB in the noise floor, in cases of noisy power supply.
机译:微控制器(MCU)和其他系统上芯片(SOC)的嵌入式模数转换器(ADC)中存在的噪声是可以阻碍其在某些应用中使用的限制因素。由于ADC和数字电路之间的接近,可以引起这种噪声,其切换耦合到模拟信号并降低输入信号完整性。此外,许多模型的微控制器具有多于一个ADC输入通道,并且它们的输入由于这些噪声源而受到损害。因为噪声源对于所有输入可以相同,所以噪声是相关的,并且可以利用它来增加数字域中的信号质量。本文提出了一种基于归一化最小均方(NLMS)自适应噪声消除算法的新型自适应噪声消除器。在所提出的技术中,使用微控制器的三个模拟输入,其中两个用作参考,并且一个用于获取所需信号。在嘈杂电源的情况下,实施了测试所提出的方案的实验设置,并在噪声底板上显示出超过20 dB的结果。

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