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Methods for measuring the power linearity of microwave detectors for radiometric applications

机译:辐射测量微波探测器功率线性度的测量方法

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摘要

A microwave radiometer relies on the power linearity of its microwave receivers to accurately measure the temperature of remote microwave noise sources. This paper considers linearity issues in the design and characterization of such receivers. Analysis is presented relating the radiometer temperature interpolation error to a second order power nonlinearity coefficient for the receiver. Formulas are also developed specifying the temperature error in terms of individual receiver component parameters. It is shown that the key parameter for the RF detector in the receiver is A/sub 4/, a fourth order RF distortion coefficient, and the key parameter for the RF amplifiers in the receiver is IP/sub 3/, the third order intercept. This paper also discusses experimental methods for measuring the power linearity of RF detectors to the levels required for radiometric applications. Three methods are discussed: the two-tone method, the amplitude modulation method, and the constant ratio method. The theory of determining the coefficients that characterize the nonlinearity of the detector from experimental data is presented. Experimental results are presented showing that the two-tone method and the constant ratio method agree to within experimental error. The sensitivity for measuring nonlinearities and the difficulties encountered in implementing each of these methods are also discussed.
机译:微波辐射计依靠其微波接收器的功率线性来精确测量远程微波噪声源的温度。本文在此类接收器的设计和表征中考虑了线性问题。提出了将辐射计温度插值误差与接收器的二阶功率非线性系数相关的分析。还开发了公式,以各个接收器组件参数来指定温度误差。可以看出,接收机中RF检测器的关键参数是A / sub 4 /,四阶RF失真系数,接收机中RF放大器的关键参数是IP / sub 3 /,三阶截距。本文还讨论了将RF检测器的功率线性度测量到辐射应用所需水平的实验方法。讨论了三种方法:双音方法,调幅方法和恒定比率方法。提出了从实验数据确定表征检测器非线性的系数的理论。实验结果表明,双音法和恒比法在实验误差范围内是一致的。还讨论了测量非线性的敏感性以及实现每种方法所遇到的困难。

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