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Error correction and uncertainty measurement of short-open-load calibration standards on a new concept of software defined instrumentation for microwave network analysis

机译:在微波网络分析的新软件定义仪器的新概念上纠错和不确定度测量

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摘要

Software-Defined Radio (SDR) has appeared as a sufficient framework for the development and testing of the measurement systems such as a signal generator, signal analyzer, and network analysis used in the network analyzer. However, most of researchers or scientists still rely on commercial analyzers were larger benchtop instruments, highly cost investment and minimum software intervention. In this paper, a new concepts measurement revolution called as Software Defined Instrumentation (SDI) on network analysis is presented, which is based on reconfigurable SDR, a low-cost implementation, ability to access RF chain and utilizing open source signal processing framework. As a result, a Vector Network Analyzer (VNA) has been successful implemented by deploying an SDR platform, test sets, and data acquisition from the GNU Radio software in host PC. The known calibration process on SHORT-OPEN-LOAD (SOL) technique is validated to ensure measurement data from this SDI free from systematic error. Two types of SOL calibration standards used for a comparison study to validate the SDI measurement system which is capable of generating the response on the differential of standard quality and accuracy of standards kits. Finally, calibration uncertainty analysis is also presented in this work by utilizing RF open source package without any cost addition.
机译:软件定义的无线电(SDR)出现为有足够的框架,用于开发和测试诸如信号发生器,信号分析器和网络分析仪中使用的网络分析的测量系统。然而,大多数研究人员或科学家仍依赖商业分析仪是较大的基准仪器,高成本的投资和最低软件干预。在本文中,提出了一种新的概念测量革命,称为软件定义仪器(SDI),基于可重新配置的SDR,低成本实现,访问RF链和利用开源信号处理框架。结果,通过从主机PC中的GNU无线电软件部署了SDR平台,测试集和数据获取,已经成功地实现了矢量网络分析器(VNA)。验证了在短开载(SOL)技术上的已知校准过程,以确保从系统错误的SDI中的测量数据。用于比较研究的两种SOL校准标准,以验证SDI测量系统,该系统能够在标准质量和标准套件的准确性上产生响应。最后,校准不确定性分析也通过利用RF开源包,没有任何成本添加。

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