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公开(公告)号:US10096899B2
公开(公告)日:2018-10-09
申请号:US15028016
申请日:2014-11-18
Applicant: THALES
Inventor: Christian Michel Renard , Jaki Amar , Philippe Freyssinier
Abstract: An electronic scanning antenna composed of an array of radiating elements positioned in an initial geometric configuration at a reference temperature, geometric configuration models of the array as a function of the temperature having been set up beforehand, the orientation of the beam being carried out by: a first phase of measuring the temperature of the array in order to select a model corresponding to the measured temperature; a second phase of calculating the phases to be applied to the signals of the radiating elements, the phases to be applied depending on the selected model.
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2.
公开(公告)号:US10673138B2
公开(公告)日:2020-06-02
申请号:US15753952
申请日:2016-09-30
Applicant: THALES
Inventor: Philippe Freyssinier , Frédéric LeClerc , Alain Adamjee , Christian Renard , Pierre Levy
Abstract: An electronic-scanning antenna composed of radiating elements each forming an active channel in which the signals arising from the channels are grouped together to form deviometry signals, each deviometry signal forming a deviometry channel, and are grouped together according to sectors to form a sector-based signal forming a sector channel, a computation-based beam being formed on the basis of the signals arising from each of the sectors, the method comprises the following steps: measuring the response to a calibration signal of each active channel at one and the same time on the sum deviometry channel and on the sector channel to which it belongs, the responses on the sum channel to obtain the calibration of the sum channel; computing, for each active channel, the disparity between the mean of the responses measured on the sum channel and the mean of the responses measured on the sector to which it belongs; in the operational phase, forming the beam by computation on the basis of the measurements of the signals arising from the sector channels calibrated with the calibration obtained for the sum channel, and correcting the computation of the beam as a function of the disparity.
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