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Decimation of Delta-Sigma-Modulated Signals Using a Low-Cost Microcontroller

机译:使用低成本微控制器抽取Δ-Σ调制信号

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摘要

Delta Sigma analog-to-digital converters (ADCs) are largely used in sensor acquisition applications. In the last few years, standalone Delta Sigma modulators have become increasingly available as off-the-shelf parts. To build a complete ADC, a standalone modulator has to be paired with some advanced elaboration unit, such as a field programmable gate array (FPGA) or a digital signal processor (DSP), which is needed for the implementation of the decimation filter. This work investigates the use of low-cost, general-purpose microcontrollers for the decimation of Delta Sigma-modulated signals. The main challenge is given by the clock frequency of the modulator, which can be in the range of a few MHz. The proposed technique deals with this limitation by employing two serial peripheral interface (SPI) modules in a time-interleaved configuration. This approach allows for continuous acquisition and elaboration of relatively high-speed, digital signals. The technique has been applied to a case study, and a data conversion system has been practically realized. The performance of the proposed filter is compared to that of a digital filter, present on board a commercial microcontroller, and the results of experimental tests are provided.
机译:Delta Sigma模数转换器(ADC)主要用于传感器采集应用。在过去几年中,独立的Delta Sigma调制器越来越多地提供为现成的部分。为了构建完整的ADC,独立的调制器必须与一些高级阐述单元配对,例如现场可编程门阵列(FPGA)或数字信号处理器(DSP),这是实现抽取滤波器所需的。这项工作调查了使用低成本,通用微控制器的使用,以便对Delta Sigma调制信号的抽取进行抽取。主要挑战是由调制器的时钟频率给出的,可以在几MHz的范围内。所提出的技术通过在时间交织配置中采用两个串行外围接口(SPI)模块来涉及这种限制。这种方法允许连续采集和阐述相对高速的数字信号。该技术已应用于案例研究,并且实际上已经实现了数据转换系统。将所提出的滤波器的性能与商业微控制器上存在的数字滤波器的性能进行比较,并且提供了实验测试的结果。

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