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Frequency and Amplitude Domain DAC-ADC Co-Testing Using Ternary Signals

机译:使用三元信号的频率和幅度域DAC-ADC共同测试

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摘要

The parametric estimation of devices in a signal chain, including the cascade of a digital-to-analog converter (DAC), a low-pass filter, and an analog-to-digital converter (ADC), is considered in this article. Frequency- and amplitude-domain procedures are presented for the estimation of the DAC output levels and ADC transition levels connected in a loopback configuration, including a low-pass filter in-between. A special class of source signals is used to perform estimation of the DAC and filter parameters. Estimation is based on a selection of excited frequencies to avoid uncertainties caused by DAC nonlinearities. An amplitude-domain estimator is used to measure the ADC integral nonlinearities by using the empirical distribution function of the ADC input signal. It is shown that high estimation accuracy can be achieved for all identifiable parameters in the signal chain. Theoretical, simulation, and experimental results are presented to validate the proposed procedure.
机译:在本文中考虑了信号链中的信号链中的装置的参数估计,包括数模转换器(DAC),低通滤波器和模数转换器(ADC)。介绍频率和幅度域过程,用于估计DAC输出电平和在环回配置中连接的ADC转换水平,包括在其中的低通滤波器。特殊类源信号用于执行DAC和滤波器参数的估计。估计基于选择激发频率,以避免由DAC非线性引起的不确定性。幅度域估计器用于通过使用ADC输入信号的经验分布函数来测量ADC积分非线性。结果表明,对于信号链中的所有可识别参数,可以实现高估计精度。提出了理论,模拟和实验结果以验证所提出的程序。

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