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Reliability analysis in aperture synthesis interferometric radiometers: Application to L band microwave imaging radiometer with aperture synthesis instrument

机译:孔径合成干涉辐射计的可靠性分析:带孔径合成仪的L波段微波成像辐射计的应用

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The Microwave Imaging Radiometer with Aperture Synthesis (MIRAS) instrument will be the first radiometer using aperture synthesis techniques for Earth observation. It will be boarded in the Soil Moisture and Ocean Salinity (SMOS) Earth Explorer Opportunity Mission of the European Space Agency and launched in 2005. The configuration under study in the MIRAS Demonstrator Pilot Project is a Y-shaped array with 27 dual-polarization L band antennas in each arm, spaced 0.89 wavelengths. In addition to these 81 antennas there are 3 additional ones between the arms for phase restoration and redundancy purposes and an extra one at the center of the Y array that is connected to a noise injection radiometer. The digitized in-phase and quadrature outputs of each receiver are multiplexed in groups of four and optically transmitted to the hub where the complex cross correlations are computed. In this configuration there are 85 antennas-receiving channels and 21 multiplexers. The objectives of this paper are twofold: (1) the study of the performance degradation of Y-shaped aperture synthesis interferometric radiometers in case of single or multiple subsystem failures and (2) a reliability analysis at subsystem level.
机译:带有孔合成的微波成像辐射仪(MIRAS)仪器将是首个使用孔径合成技术进​​行地球观测的辐射仪。它将在欧洲航天局的土壤水分和海洋盐度(SMOS)地球探索者机会任务中登上,并于2005年发射。MIRAS示威者试验项目中正在研究的配置是Y形阵列和27个双极化L每个臂中的波段天线,间隔0.89个波长。除了这81根天线之外,在臂之间还有3根天线用于相位恢复和冗余目的,在Y阵列的中央有1根天线连接到噪声注入辐射计。每个接收器的数字化同相和正交输出以4组为一组进行多路复用,然后光学传输到集线器,在此计算复杂的互相关。在这种配置中,有85个天线接收通道和21个多路复用器。本文的目的是双重的:(1)研究在单个或多个子系统出现故障的情况下Y形孔径合成干涉辐射计的性能下降;(2)在子系统级别的可靠性分析。

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