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Influence of Different Configurations of Nonideal Calibration Standards on Vector Network Analyzer Performance

机译:非理想校准标准的不同配置对矢量网络分析仪性能的影响

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摘要

To perform system error correction of a microwave vector network analyzer (VNA), several calibration procedures are applied, several of which are derived from the well-known short–open-load-through (SOLT) calibration method where lumped one-port circuits like short circuits, open circuits, and low-reflective loads are used as calibration standards. These derived calibration algorithms only use three calibration standard connections—instead of six for SOLT; hence, the calibration time is considerably reduced. Various configurations of high- and low-reflective standards at test ports 1 and 2 of the VNA are possible. Using inaccurate calibration standard modeling, the VNA calibration is incorrect, and hence, inaccurate $S$-parameters of a device under test (DUT) are measured. In this paper, it is theoretically and experimentally shown how, due to non-ideal calibration standard modeling, the deviations of measured $S$-parameters of the DUT from their hardware-defined true values depend on the inaccurate calibration standard modeling, on the configurations of the calibration standards at the test ports, on the reflection values of the calibration standards, and on the $S$ -parameter values of the DUTs themselves.
机译:为了对微波矢量网络分析仪(VNA)进行系统误差校正,应用了几种校准程序,其中一些是从众所周知的短开放负载直通(SOLT)校准方法中获得的,其中集中式单端口电路如短路,开路和低反射负载用作校准标准。这些派生的校准算法仅使用三个校准标准连接,而不是SOLT的六个。因此,大大减少了校准时间。 VNA的测试端口1和2上的高反射标准和低反射标准的各种配置都是可能的。使用不正确的校准标准模型,VNA校准是不正确的,因此,被测设备(DUT)的$ S $参数不正确。在本文中,从理论上和实验上表明,由于非理想的校准标准模型,DUT的测量的$ S $参数与其硬件定义的真实值之间的偏差如何取决于不正确的校准标准模型,测试端口上校准标准的配置,校准标准的反射值以及DUT本身的$ S $参数值。

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