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Novel algorithms for the characterization of n-port networks by using a two-port network analyzer

机译:使用两端口网络分析仪表征n端口网络的新颖算法

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摘要

The measurement of the scattering matrices of n-port networks is an important task. For this purpose two ports of the n-port network are connected with the network analyzer and the remaining ports are connected to reflecting terminations. In order to specify the scattering matrix of a n-port network with the multi-port method (Rolfes et al., 2005), n reflecting terminations are required from which at least one reflection factor needs to be known. There are some cases, in which the multi-port method shows weak convergence properties. For example, a T-junction cannot be identified if the reflecting terminations used are short circuits and if the line length is equivalent to a multiple of a half wavelength. This is due to the fact that the two ports connected to the network analyzer become isolated. Two new algorithms, named the sub-determinant method and the wave-identification method, respectively, which employ a second set of reflection terminations that have to differ from the first set, allow to identify every n-port network without the necessity to distinguish different cases. Both methods are based on least square algorithms and allow to determine all scattering parameters of a n-port-network directly and uniquely.
机译:n端口网络的散射矩阵的测量是一项重要的任务。为此,n端口网络的两个端口与网络分析仪连接,其余端口连接至反射终端。为了用多端口方法指定n端口网络的散射矩阵(Rolfes等,2005),需要n个反射终端,从中至少需要知道一个反射因子。在某些情况下,多端口方法显示出较弱的收敛特性。例如,如果使用的反射端子是短路的,并且线长等于一半波长的倍数,则无法识别T形结。这是由于连接到网络分析仪的两个端口被隔离的事实。两种新算法分别称为子行列式方法和波识别方法,它们使用第二组反射终端(必须与第一组不同)来识别每个n端口网络,而不必区分不同的网络案件。两种方法均基于最小二乘算法,并且可以直接唯一地确定n端口网络的所有散射参数。

著录项

  • 作者

    Will B.; Rolfes I.; Schiek B.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 eng
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