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Analysis of noise temperature sensitivity for the design of a broadband thermal noise primary standard

机译:用于设计宽带热噪声主要标准的噪声温度敏感性分析

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摘要

A broadband primary standard for thermal noise measurements is presented and its thermal and electromagnetic behaviour is analysed by means of a novel hybrid analytical-numerical simulation methodology. The standard consists of a broadband termination connected to a 3.5 mm coaxial airline partially immersed in liquid nitrogen and is designed in order to obtain a low reflectivity and a low uncertainty in the noise temperature. A detailed sensitivity analysis is made in order to highlight the critical characteristics that mostly affect the uncertainty in the noise temperature, and also to determine the manufacturing and operation tolerances for a proper performance in the range 10 MHz to 26.5 GHz. Aspects such as the thermal bead design, the level of liquid nitrogen or the uncertainties associated with the temperatures, the physical properties of the materials in the standard and the simulation techniques are discussed.
机译:提出了一种用于热噪声测量的宽带主要标准,并通过一种新颖的混合解析数值模拟方法来分析其热和电磁行为。该标准包括一个宽带终端,该终端连接到部分浸入液氮中的3.5 mm同轴电缆上,其设计目的是获得低反射率和噪声温度的低不确定性。进行了详细的灵敏度分析,以突出主要影响噪声温度不确定性的关键特性,并确定在10 MHz至26.5 GHz范围内具有适当性能的制造和操作公差。讨论了诸如热珠设计,液氮水平或与温度相关的不确定性,标准中材料的物理特性以及模拟技术等方面。

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