Title :
Comparison of noise figure calibration and measurement techniques using noise figure verification techniques
Author :
Shoulders, Bob ; Wong, Ken
Abstract :
We perform noise figure calibrations on a noise measurement receiver using the following techniques: A “Y-factor” technique that uses two source impedance states (a characterized “excess” noise source and a low reflection room temperature termination) in both the calibration and the measurement, a “Vector Cold Noise (VCN)” technique that uses multiple room temperature source impedance states in both the calibration and the measurement along with a characterized “excess” noise source in the calibration and a “Scalar Cold Noise” technique that uses the same calibration as the VCN technique, but uses only a low reflection room temperature source impedance state in the measurement. Following each calibration, we verify the calibrations after the method of Randa et al. and present the results along with uncertainties derived from a Monet Carlo simulation.
Keywords :
Monte Carlo methods; calibration; electric impedance measurement; electric noise measurement; radio receivers; Monte Carlo simulation; VCN technique; Y-factor technique; noise figure calibration; noise figure measurement techniques; noise figure verification techniques; noise measurement receiver; reflection room temperature source impedance state; scalar cold noise technique; vector cold noise technique; Acoustic reflection; Calibration; Gain measurement; Impedance measurement; Measurement techniques; Noise figure; Noise measurement; Performance evaluation; Power measurement; Temperature;
Conference_Titel :
Microwave Measurements Conference (ARFTG), 2010 75th ARFTG
Conference_Location :
Anaheim, CA
Print_ISBN :
978-1-4244-6364-0
DOI :
10.1109/ARFTG.2010.5496323