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The efficiency of methods for measuring A/D converter linearity

机译:测量A / D转换器线性度的方法的效率

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In this paper, the efficiency of three methods commonly used to measure the linearity characteristics of precision Nyquist-rate analog-to-digital (A/D) converters is evaluated. The efficiency of each method, which is determined by the time required to obtain linearity estimates at a specified level of accuracy, is compared to the maximum efficiency that is theoretically achievable, as given by the Cramer-Rao bound. Simulation results are presented for two open-loop measurement methods, the tally and weight method and the code density method, demonstrating that the code density method obtains an efficiency close to the theoretical optimum over a wide range of measurement times and converter noise levels, whereas the tally and weight method falls short of the optimum for converters with noise levels exceeding 1/4 LSB. The efficiency of the servo loop method, a common closed-loop method for measuring linearity, is similarly evaluated, and is found to fall short of the maximum efficiency that is theoretically achievable in the closed-loop configuration. A modified closed-loop measurement method is described that obtains an efficiency close to the theoretical optimum through the use of maximum-likelihood estimation.
机译:本文评估了三种通常用于测量精密奈奎斯特速率模数转换器(A / D)转换器线性特性的方法的效率。将每种方法的效率(由在指定的精度水平上获得线性估计所需的时间确定)与理论上可实现的最大效率(如Cramer-Rao界限所给出)进行比较。给出了两种开环测量方法的仿真结果,计数和权重方法以及代码密度方法,证明了代码密度方法在很宽的测量时间和转换器噪声水平下可获得接近于理论最佳值的效率,而对于重量超过1/4 LSB的转换器,计数和权重方法未达到最佳选择。类似地评估了伺服环路方法(一种用于测量线性度的常见闭环方法)的效率,发现其效率未达到理论上在闭环配置中可获得的最大效率。描述了一种改进的闭环测量方法,该方法通过使用最大似然估计来获得接近理论最优值的效率。

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