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The Calculation of Dynamic Errors in Signal Transformation Circuits of Analog-to-Digital Converters for Mechatronic Systems

机译:用于机电系统模数转换器信号变换电路动态误差的计算

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Precision and wide-band analog-to-digital converters (ADC) are used for information processing in mechatronic systems. The analog signal transformation circuits, such as sample, and hold circuit (SEC) and an analog signal interpolation circuit (ASIC), are applied with the aim of increasing the precision of converters. These circuits allow for reducing the quantity of comparators in the converter and increase their dynamic stability. The models of SHC and ASIC as well as the results of the calculation precision and dynamic parameters of such circuits are presented in this paper. Equations for the calculation of the aperture error in the Gaussian and a sinusoidal input signal were derived. The structural model, proposed for SHC, evaluates the nonlinearity of a transfer characteristic, and the influence of noise in the signal and strobe channels. The results of the theoretical research and analytical equations for the evaluation of the number of signal interpolation block differential amplifiers, which depends on the analog signal's maximal frequency and the number of segments of the converter, are presented. The results of this work allow one to estimate the main precision and dynamic parameters of ADC transformation circuits.
机译:精度和宽带模拟 - 数字转换器(ADC)在机电系统中使用的信息处理。所述模拟信号转换电路,例如样品,和保持电路(SEC)和模拟信号内插电路(ASIC),被施加有增加转换器的精度的目的。这些电路允许降低转换器比较器的数量,并提高他们的动态稳定性。 SHC和ASIC的模型以及计算精度和这种电路的动态参数的结果在本文提出。源自于孔径误差的高斯计算和一个正弦输入信号方程。结构模型,提出了SHC,评估的传递特性的非线性和噪声中的信号和选通信信道的影响。理论研究和分析方程信号内插块的差分放大器的数目,其取决于模拟信号的最高频率和转换器的段的数量的评价结果​​,给出。这项工作的结果允许一个估计ADC转换电路的主精度和动态参数。

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