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首页> 外文期刊>International Journal of Infrared and Millimeter Waves >MILLIMETER-WAVE ATMOSPHERIC TURBULENCE MEASUREMENTS: INSTRUMENTATION, SELECTED RESULTS, AND SYSTEM EFFECTS
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MILLIMETER-WAVE ATMOSPHERIC TURBULENCE MEASUREMENTS: INSTRUMENTATION, SELECTED RESULTS, AND SYSTEM EFFECTS

机译:毫米波大气湍流测量:仪器,所选结果和系统效果

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摘要

Increasing interest in and greater usage of the millimeter-wave frequency bands has resulted in a need for better characterization of atmospheric effects at these frequencies. While attenuation is recognized as the most significant effect, recent measurements of fluctuations in intensity and phase caused by atmospheric turbulence have shown that these phenomena will also degrade system performance at both millimeter-wave and microwave frequencies. This paper describes the millimeter-wave and meteorological instrumentation used to make these measurements and gives selected results. It is determined that phase fluctuations as great as 1.5 radians and intensity fluctuations as large as 2.8 dB are observed over a 1370 m path in hot, humid weather. The effects of these fluctuations on the performance of practical, existing microwave phased array and monopulse systems are assessed. It is determined that phase fluctuations in particular will degrade the performance of microwave adaptive nulling arrays and monopulse trackers.
机译:人们对毫米波频段的兴趣越来越大,使用频率越来越高,因此需要更好地表征这些频率下的大气效应。尽管衰减被认为是最显着的影响,但最近对由大气湍流引起的强度和相位波动的测量表明,这些现象还将降低毫米波和微波频率下的系统性能。本文介绍了用于进行这些测量的毫米波和气象仪器,并给出了选定的结果。已确定在炎热潮湿的天气中,在1370 m的路径上观察到最大1.5弧度的相位波动和最大2.8 dB的强度波动。评估了这些波动对实际的,现有的微波相控阵和单脉冲系统性能的影响。已确定特别是相位波动会降低微波自适应调零阵列和单脉冲跟踪器的性能。

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