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A Novel Inversion Method of Manufacturing Flaws in the Packaging of Conformal Load-Bearing Antenna Structure

机译:一种新型制造缺陷的反转方法,包括保形承重天线结构的包装

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摘要

Composite material is widely used in the conformal load-bearing antenna structure (CLAS), and the manufacturing flaws in the packaging process of the CLAS will lead to the degradation of its wave-transparent property. For this problem, a novel inverse method of the flaw’s dimension by antenna-radome system’s far field data has been proposed. Two steps are included in the inversion: the first one is the inversion from the far filed data to the transmission coefficient of the CLAS’s radome; the second one is the inversion from the transmission coefficient to the flaw’s dimension. The inversion also has a good potential for the separable multilayer composite material radome. A 12.5 GHz CLAS with microstrip antenna array is used in the simulation, which indicates the effectiveness of the novel inversion method. Finally, the error analysis of the inversion method is presented by numerical simulation; the results is that the inversed error could be less than 10%, if the measurement error of far field data is less than 0.45 dB in amplitude and ±5° in phase.
机译:复合材料广泛用于保形承载天线结构(CLA),并且CLA的包装过程中的制造缺陷将导致其波透明性的降解。对于这个问题,已经提出了一种通过天线 - 无线电系统的远场数据的缺陷尺寸的新颖逆方法。反转中包含两个步骤:第一个是从远摄数据到Clas radome的传输系数的反转;第二个是从透射系数到缺陷的尺寸的反转。倒置还具有可分离多层复合材料基质的良好潜力。在模拟中使用带微带天线阵列的12.5GHz CLA,这表明了新型反演方法的有效性。最后,通过数值模拟提出了反演方法的误差分析;结果是,如果远场数据的测量误差小于0.45 dB,则反转误差可能小于10%,并且相位中的幅度为±5°。

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