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Quiet zone qualification of a very large, wideband rolled-edge reflector

机译:安静区域非常大的宽带滚动边缘反射器

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Installing a large compact range reflector and electromagnetically qualifying the quiet zone is a major undertaking, especially for very large panelized reflectors. The approach taken to design the required rolled-edge reflector geometry for achieving a 5 meter quiet zone across a frequency range of 350 MHz to 40 GHz was previously presented [1]. The segmentation scheme, fabrication methodology, and intermediate qualification of panels using an NSI-MI developed microwave holography tool were also presented. This reflector has since been installed and the compact range qualified by direct measurement of the electromagnetic fields in the quiet zone using a large field probe. This paper presents the comparison and correlation between the holography predictions and the field probe measurements of the quiet zone. Installation and alignment techniques used for the multiple panel reflector are presented. Available metrology tools have inherent accuracy limitations leading to residual misalignment between the panels. NSI-MI has overcome this limitation by using its holography tool along with existing metrology techniques to predict the field quality in the quiet zone based on surface measurements of the panels. The tool was used to establish go/no-go criteria for panel alignment accuracy achieved on site. Correlation of the holography predictions with actual field probe measurements of the installed reflector validates the application of the holography tool for performance prediction of large, multiple-panel, rolled-edge reflectors.
机译:安装一个大型紧凑型范围反射器和电磁排序的安静区域是一个主要的承诺,特别是对于非常大的镶板反射器。为设计所需的轧制边缘反射器几何形状为实现5米静脉横跨350MHz至40GHz的频率范围的方法[1]。还介绍了使用NSI-MI开发的微波全息工具的面板的分段方案,制造方法和中间鉴定。该反射器已经安装了,并且通过使用大场探针直接测量安静区域中的电磁场的紧凑范围。本文介绍了全息预测与安静区的现场探测测量之间的比较和相关性。提出了用于多面板反射器的安装和对准技术。可用的计量工具具有固有的准确性限制,导致面板之间的残余未对准。 NSI-MI通过使用其全息工具以及现有的计量技术来克服这种限制,以基于面板的表面测量来预测安静区域中的场质量。该工具用于建立在现场实现的面板对准精度的GO / NO-GO标准。全息预测与安装反射器的实际探测测量的相关性验证了全息工具的应用,以进行大,多面板,滚动边缘反射器的性能预测。

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