多静态毫米波成像系统中的运动效应

A. Schiessl, S. Ahmed, L. Schmidt
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引用次数: 9

摘要

在机场安检处,当局要求改进人员检查设备,以提高安全性。主动毫米波成像系统提供可靠的自动检测隐藏威胁所需的高质量图像。由于毫米波成像系统采用静态场景,在筛选过程中由于人员的移动而产生的运动效应会降低图像质量,因此所需的测量时间非常短。多静态成像阵列设计和全电子扫描与数字波束形成相结合,提供了短的测量时间、高分辨率和高图像动态范围,这是用于乘客安检的成像系统的关键参数。本文解释了该系统的工作原理,并使用不同测试对象、站立和移动人员的毫米波图像演示了该成像系统在场景中运动方面的性能。使用多静态稀疏阵列的电子微波成像系统适用于下一代安检系统,将支持乘客的移动安检。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motion effects in multistatic millimeter-wave imaging systems
At airport security checkpoints, authorities are demanding improved personnel screening devices for increased security. Active mm-wave imaging systems deliver the high quality images needed for reliable automatic detection of hidden threats. As mm-wave imaging systems assume static scenarios, motion effects caused by movement of persons during the screening procedure can degrade image quality, so very short measurement time is required. Multistatic imaging array designs and fully electronic scanning in combination with digital beamforming offer short measurement time together with high resolution and high image dynamic range, which are critical parameters for imaging systems used for passenger screening. In this paper, operational principles of such systems are explained, and the performance of the imaging systems with respect to motion within the scenarios is demonstrated using mm-wave images of different test objects and standing as well as moving persons. Electronic microwave imaging systems using multistatic sparse arrays are suitable for next generation screening systems, which will support on the move screening of passengers.
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