Three Averaging Techniques for Reduction of Antenna Temperature Variance Measured by a e Mode, C-Band Radiometer
As new radiometer technologies provide the possibility of greatly improved spatial resolution, their performance must also be evaluated in terms of expected sensitivity and absolute accuracy. As aperture size increases, the sensitivity of a e mode radiometer can be maintained or improved by application of any or all of three digital averaging techniques: antenna data averaging with a greater than 50% antenna duty cycle, reference data averaging, and gain averaging. An experimental, noise-injection, benchtop radiometer at C-band showed a 68.5% reduction in Delta-T after all three averaging methods had been applied simultaneously. For any one antenna integration time, the optimum 34.8% reduction in Delta-T was realized by using an 83.3% antenna/reference duty cycle.Mackenzie, Anne I. and Lawrence, Roland W.Langley Research CenterDICKE RADIOMETERS; NOISE TEMPERATURE; AVERAGE; MICROWAVE RADIOMETERS; SENSITIVITY; MICROWAVE ANTENNAS; CALIBRATING; REMOTE SENSING; C BAND; ANTENNA GAIN; SPATIAL RESOLUTION; STABILITY…
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yazar Three Averaging Techniques for Reduction of Antenna Temperature Variance Measured by a e Mode, C-Band Radiometer | National Aeronautics and Space Administration NASA |
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