A Generalized Radiometer System Equation That Includes Temperature-Dependent System Losses

Arya Menon, M. Grady, T. Weller
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引用次数: 2

Abstract

This paper presents a generalized radiometer system equation (RSE) for total power radiometers that corrects for mismatch and temperature-dependent system losses, and may be applied with any combination of calibration sources. The equation is validated through simulation in Keysight ADS as well as experimentally using a K-band radiometer. The estimated temperature is compared with calculated values from other known equations, which are reduced forms of the RSE under different assumptions, namely (i) all components are at the same temperature (isothermal case), and (ii) mismatch can be ignored and only temperature-dependent insertion loss is corrected (loss only case). Simulations with a 50 Ω load at 310 K shows errors of −0.18 K, −0.56 K and −0.76 K with the RSE, isothermal case and loss only case, respectively. Experimental results confirm that the RSE gives the lowest error, thereby demonstrating that it models the system more accurately than the other two treatments.
包含温度相关系统损耗的广义辐射计系统方程
本文提出了一个广义辐射计系统方程(RSE),用于校正失配和温度相关的系统损耗,并可与任何校准源组合应用。该方程通过Keysight ADS的模拟以及k波段辐射计的实验验证。将估算的温度与其他已知方程的计算值进行比较,这些方程是RSE在不同假设下的简化形式,即(i)所有组分处于相同温度(等温情况),以及(ii)不匹配可以忽略,只校正与温度相关的插入损耗(仅损耗情况)。在310 K下,负载为50 Ω的模拟结果显示,等温情况下的RSE误差分别为- 0.18 K、- 0.56 K和- 0.76 K。实验结果证实,RSE给出了最低的误差,从而表明它比其他两种处理更准确地建模系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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