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Full-wave analysis of Compensated Compact Ranges including absorber structures

机译:包括吸收器结构的补偿紧凑范围的全波分析

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The Compensated Compact Ranges (CCRs) of Airbus Defence & Space form a dual-reflector arrangement to create a cross-polar-compensated electromagnetic field in an indoor facility which shows far-field characteristics in close proximity to the reflectors. Serrations are mounted on the reflectors to mitigate diffraction of the waves. The serrations of the main reflector which face the illuminating antenna feed, however, cause diffracted field components. Thus, it is necessary to shadow these serrations with a specially designed absorber cylinder, which is called SERAP (Serration Radiation Protection), in order to prevent the undesired field components from radiating into the quiet zone. In addition, the direct leakage of the feed into the test zone is suppressed by a cylinder covered with absorbers called Baffle. In a detailed simulation model of a CCR the absorber structures have to be considered in order to reflect the physics accurately. Hence, models of the absorber cylinders are developed in FEKO and GRASP. By using the existing reflector models and the Multi-level Fast Multipole Method (MLFMM) in combination with the Surface Equivalence Principle (SEP), a strong correlation between simulation results and probing measurements is shown at lower frequencies.
机译:空中客车防务与航天公司的补偿紧凑范围(CCR)构成了双反射器装置,可在室内设施中产生交叉极化补偿的电磁场,该电磁场在靠近反射器的位置显示出远场特性。锯齿安装在反射器上,以减轻波的衍射。但是,面对照明天线馈源的主反射器的锯齿会引起衍射的场分量。因此,有必要用专门设计的吸收圆柱体(称为SERAP(锯齿辐射防护))遮盖这些锯齿,以防止有害的场分量辐射到安静区域。此外,进料直接漏入测试区可通过一个装有被称为折流板的吸收器的圆柱体来抑制。在CCR的详细模拟模型中,必须考虑吸收器结构,以便准确反映物理特性。因此,在FEKO和GRASP中开发了吸收缸的模型。通过将现有的反射器模型和多级快速多极子方法(MLFMM)与表面等效原理(SEP)结合使用,可以在较低的频率下显示出仿真结果与探测测量值之间的强相关性。

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