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On the microwave noise figure measurement: A virtual approach for mismatched devices

机译:在微波噪声系数上测量:虚拟方法的虚拟方法

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In this paper, the challenging task of the 50 Omega noise figure measurement of mismatched devices has been addressed by tailoring a microwave virtual test-bench in a computer-aided design environment. The effects of the real measurement chain on the device noise figure as well as that of the noise figure meter and noise source have been taken into account by characterizing and modeling every component. The effectiveness of the simulation has been proven by comparing the virtual test-bench noise figure with that calculated from the measured scattering and noise parameters of a 0.15 mu m pHEMT in the 2-26 GHz frequency range. Hereby, all the processes involved in the 50 Omega noise figure measurements of mismatched devices have been presented by a visual and user-friendly interface. By this original approach, a fast evaluation of each component role in the measurement chain can be accomplished. A performance estimation of the system can be performed and updated in a simple way whenever a component is replaced. Finally, since every step of the procedure has been disclosed and extensively clarified, it might be used as a training tool for microwave engineers. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,通过在计算机辅助设计环境中定制微波虚拟测试台来解决了50个Omega噪声系数测量的具有挑战性任务。通过表征和建模每个组件,已经考虑了实际测量链对器件噪声系数以及噪声系数仪表和噪声源的影响。通过比较来自2-26GHz频率范围的0.15μmphemt的测量散射和噪声参数计算的虚拟测试台噪声系数,已经证明了模拟的有效性。在此,通过视觉和用户友好的界面介绍了50 Omega噪声系数测量的所有过程。通过这种原始方法,可以实现测量链中每个组件角色的快速评估。只要替换组件,就可以以简单的方式执行和更新系统的性能估计。最后,由于该过程的每个步骤都被公开和广泛地阐明,因此它可能被用作微波工程师的培训工具。 (c)2019年elestvier有限公司保留所有权利。

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