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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Analysis of noise-injection networks for interferometric-radiometer calibration
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Analysis of noise-injection networks for interferometric-radiometer calibration

机译:用于干涉辐射计校准的噪声注入网络分析

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The spatial resolution of current space-borne Earth observation radiometers is limited by the physical antenna aperture. This is especially critical at L-band, which exhibits high sensitivity to soil moisture and sea surface salinity. Interferometric radiometers (InR's) are currently being studied by several space agencies as a feasible alternative to overcome this problem. However, their calibration is a crucial issue since most techniques inherited from radio astronomy cannot be directly applied. Due to the large number of receiving channels, calibration techniques based on centralized noise injection from a single noise source will require a large and stable distribution network, which is technically very complex and unacceptable from the point-of-view of mass and volume. Procedures based on distributed noise injection from a set of noise sources through smaller distribution networks have been recently proposed by the authors as an alternative to alleviate these technological problems. In this paper, the analysis of these networks, the impact of the noise generated by the network losses on the calibration, and the impact of front-end reradiated noise are analyzed. Finally, the optimum circuit topologies and tolerances to which these networks have to be characterized in order to achieve the required calibration are derived. These configurations are formed by cascading basic 1:2 and 1:3 isolated power splitters. Isolators at receiver inputs have to be included in order to minimize offsets originating from the correlation of reradiation of receiver noise. It has been found that, in order to satisfy the calibration requirements of InR's, the S-parameters of the ensemble noise-injection network plus isolators have to be known to within 0.025-0.050 dB in amplitude and 0.5/spl deg/ in phase, and their physical temperature known to within 0.5/spl deg/C.
机译:当前的星载地球观测辐射计的空间分辨率受到物理天线孔径的限制。这在L波段尤为重要,因为L波段对土壤湿度和海表盐度表现出很高的敏感性。几个空间机构目前正在研究干涉辐射计(InR's),作为克服这一问题的可行替代方案。但是,它们的校准是一个关键问题,因为不能直接应用从射电天文学继承的大多数技术。由于接收通道的数量众多,基于基于来自单个噪声源的集中噪声注入的校准技术将需要一个大型且稳定的分配网络,这在技术上非常复杂,从质量和体积的角度来看是不可接受的。作者最近提出了基于通过一组较小的分布网络从一组噪声源进行分布式噪声注入的方法,以缓解这些技术问题。本文对这些网络进行了分析,分析了网络损耗所产生的噪声对标定的影响以及前端辐射噪声的影响。最后,得出这些网络必须加以表征才能实现所需校准的最佳电路拓扑和公差。这些配置是通过级联基本的1:2和1:3隔离式功率分配器形成的。必须包括接收机输入端的隔离器,以使源自接收机噪声再辐射相关性的偏移最小。已经发现,为了满足InR的校准要求,必须知道集成噪声注入网络的S参数加上隔离器的幅度在0.025-0.050 dB之内,相位在0.5 / spl deg /以内,其物理温度在0.5 / spl deg / C之内。

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