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A Dynamic System Matching Technique: A State Space Formulation

机译:动态系统匹配技术:状态空间公式化

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Analog systems are typically modelled by differential equations with several coefficients as design parameters. Manufacturing processes produce systems whose coefficients vary from the desired coefficients of the system designs. In [1], the authors presented a method for combining the measurements from several analog systems, that are nominally the same, using a technique based on the concept of dynamic element matching discussed in [2]. A heuristic analysis in [1] and a simulation in [3], indicated that this method can effectively control the output errors when the outputs of the several systems are corrupted due to manufacturing errors. In a recent paper [4], a rigorous analysis of a dynamic system matching technique (DSMT) applicable to a small class of scalar single input-single output (SISO) analog systems showed that for that class of systems the DSMT reduces the power in the output noise due to manufacturing errors. In this paper, those results are generalized to a class of linear SISO systems defined by general linear state space equations.
机译:模拟系统通常由具有多个系数作为设计参数的微分方程建模。制造过程会产生系数与系统设计所需系数不同的系统。在[1]中,作者提出了一种方法,该方法使用基于[2]中讨论的动态元素匹配概念的技术,将名义上相同的几个模拟系统的测量结果进行组合。文献[1]中的启发式分析和文献[3]中的模拟表明,当由于制造误差而导致多个系统的输出损坏时,该方法可以有效地控制输出误差。在最近的论文[4]中,对适用于一小类标量单输入单输出(SISO)模拟系统的动态系统匹配技术(DSMT)的严格分析表明,对于此类系统,DSMT降低了功率。由于制造错误而产生的输出噪声。在本文中,这些结果被推广到由一般线性状态空间方程定义的一类线性SISO系统。

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