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Wideband Microwave Camera for Real-Time 3-D Imaging

机译:用于实时3D成像的宽带微波摄像机

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This paper presents a microwave camera design operating in the 20-30 GHz frequency range and capable of producing 3-D images at video frame rate (i.e., real-time), using synthetic aperture radar (SAR) technique. This microwave camera has the potential to provide real-time inspection and diagnosis capabilities in the nondestructive testing, biomedical and security applications, to name a few. The camera utilizes an array composed of a novel array element with built-in dual receivers at its radiating end. The dual receiver design has two significant features particularly important for SAR imaging, namely, it provides for nonuniform spatial sampling, and allows the use of antennas whose sizes are greater than half of the operating wavelength. The camera operates in the monostatic mode where each antenna in the array is used as the transmitting and receiving antenna. A major advantage of this real-time camera design is the simplicity of the microwave circuitry, which reduces the overall size, power consumption, and, cost and renders it portable. The detail design of this wideband microwave 3-D real-time camera is provided along with several images of diverse and complex targets to demonstrate its capabilities and functionality.
机译:本文介绍了一种微波摄像机设计,该摄像机工作在20-30 GHz频率范围内,并能够使用合成孔径雷达(SAR)技术以视频帧速率(即实时)生成3-D图像。这款微波摄象机有潜力在无损检测,生物医学和安全应用中提供实时检查和诊断功能,仅举几例。该摄像机利用了一个由新颖的阵列元件组成的阵列,在其辐射端带有内置的双接收器。双接收机设计具有两个特别重要的特征,对SAR成像特别重要,即,它提供了不均匀的空间采样,并允许使用尺寸大于工作波长一半的天线。摄像机以单静态模式运行,其中阵列中的每个天线都用作发送和接收天线。这种实时摄像机设计的主要优势是微波电路的简单性,从而减小了整体尺寸,功耗,成本,并使之具有便携性。该宽带微波3-D实时相机的详细设计以及不同和复杂目标的几幅图像一起提供,以展示其功能。

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