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A measurement-based approach with accuracy evaluation and its applications to circuit analysis and synthesis

机译:基于测量的精度评估方法及其在电路分析和综合中的应用

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In this paper, we evaluate a useful general model for linear direct current (DC) networks, containing design parameters, multiple inputs and outputs. The outputs are rational multivariate functions of the parameters and linear functions of the inputs. For an unknown linear system, the unknown coefficients of these functions can be determined by taking a suitable number of measurements and solving a set of linear equations constructed from selected measurement data. The rational functions are useful to support the design such that outputs can be constrained to a desired interval. An interesting result was the particular case where the parameter varied is located at the output terminal. This is an alternative way to estimate the Thevenin equivalent of a circuit. Real data are in general noisy with accuracy dependent on the tolerance of components and on the measurement device used. We present a detailed analysis of the application of the measurement-based approach under real experiments. Initially, a resistive DC circuit case is presented, and the results are verified by simulation and experimental laboratory data. Finally, practical circuits, such as a conditioning signal stage with an operational amplifier, and a boost DC-DC converter are considered. Copyright (c) 2017 John Wiley & Sons, Ltd.
机译:在本文中,我们评估了一个有用的线性直流(DC)网络通用模型,其中包含设计参数,多个输入和输出。输出是参数的有理多元函数和输入的线性函数。对于未知的线性系统,可以通过进行适当数量的测量并求解由选定测量数据构成的一组线性方程来确定这些函数的未知系数。有理函数对支持设计很有用,这样可以将输出限制在所需的间隔内。一个有趣的结果是参数变化位于输出端子的特殊情况。这是估计电路的戴维南等效值的另一种方法。实际数据通常会带有噪声,其准确性取决于组件的公差和所使用的测量设备。我们对基于测量的方法在实际实验中的应用进行了详细分析。最初,介绍了一个电阻性直流电路案例,并通过仿真和实验实验室数据验证了结果。最后,考虑实际电路,例如带运算放大器的调节信号级和升压DC-DC转换器。版权所有(c)2017 John Wiley&Sons,Ltd.

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