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Rapid Rotary Scanner and Portable Coherent Wideband Q-Band Transceiver for High-Resolution Millimeter-Wave Imaging Applications

机译:快速旋转扫描仪和便携式相干宽带Q波段收发器,用于高分辨率毫米波成像应用

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Millimeter-wave imaging techniques, based on synthetic aperture focusing (SAF), have been successfully used for nondestructive testing (NDT) of various composite and aerospace structures. Most current imaging mechanisms utilize raster scanning platforms, whereby the imaging system is scanned in a rectangular grid over the structure-under-test (SUT). Most raster scanning platforms, although relatively simple in design and construction, are inherently slow. Furthermore, SAF techniques necessitates the use of vector-measuring instruments such as a vector network analyzer (VNA), which are typically: 1) bulky; 2) cannot be mounted on scanning platforms; 3) are not suitable for in-field use; and 4) expensive. These factors limit the effectiveness of these millimeter-wave imaging techniques in applications where frequent and rapid inspection of large structures is required. Hence, there is a great demand for rapid mechanical scanning systems combined with portable wideband transceivers in order to increase the utility of these imaging techniques, and provide a real solution to many practical NDT applications. To this end, a unique rotary scanner system, capable of scanning a relatively large area in a relatively short span of time, was designed and constructed. In addition, a custom-designed portable transceiver system operating in the frequency range of 35–45 GHz (Q-band) was developed and incorporated into the rotary scanner system for producing coherent (amplitude and phase) and accurate data suitable for synthetic aperture imaging and the 10-GHz bandwidth allows the generation of relatively high-resolution millimeter-wave holographical images. This paper presents the design of the rotary scanning system, the associated Q-band transceiver and the integration of the two systems via a custom-designed software. To illustrate the efficacy of the complete imaging system, SAF of several complex structures produced using the proposed system, are presented and discussed-n-n.
机译:基于合成孔径聚焦(SAF)的毫米波成像技术已成功用于各种复合材料和航空航天结构的无损检测(NDT)。当前大多数成像机制都利用光栅扫描平台,从而在被测结构(SUT)上的矩形网格中扫描成像系统。大多数光栅扫描平台虽然在设计和构造上相对简单,但从本质上来说却很慢。此外,SAF技术需要使用矢量测量仪器,例如矢量网络分析仪(VNA),这些仪器通常:1)体积庞大; 2)无法安装在扫描平台上; 3)不适合野外使用;和4)昂贵。这些因素限制了这些毫米波成像技术在需要频繁且快速检查大型结构的应用中的有效性。因此,迫切需要与便携式宽带收发器结合的快速机械扫描系统,以增加这些成像技术的实用性,并为许多实际的NDT应用提供真正的解决方案。为此,设计并构造了一种独特的旋转扫描仪系统,该系统能够在相对较短的时间内扫描较大的区域。此外,还开发了在35-45 GHz(Q波段)频率范围内运行的定制设计的便携式收发器系统,并将其并入旋转扫描仪系统中,以产生适用于合成孔径成像的相干(幅度和相位)和精确数据10 GHz带宽允许生成相对高分辨率的毫米波全息图像。本文介绍了旋转扫描系统的设计,相关的Q波段收发器以及通过定制设计的软件对这两个系统的集成。为了说明整个成像系统的功效,提出并讨论了使用所提出的系统生产的几种复杂结构的SAF。

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