基于正交二进制编码的多站微波合成孔径雷达(SAR)成像

M. Dvorsky, John R. Gallion, M. Ghasr, R. Zoughi
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引用次数: 1

摘要

在微波合成孔径雷达(SAR)成像系统中应用正交二相移键控(BPSK)调制是一种降低系统硬件复杂度、加快大型成像阵列测量速度的新技术。BPSK技术通常用于测距和通信,其中传输多个信号而不受干扰是很重要的。这种方法也可以应用于多基地SAR成像,允许成像阵列同时从所有发射/接收对收集数据。然后,这些测量结果可以通过强大的SAR成像算法进行处理,从而实时生成3D图像,适用于各种应用,包括涉及无损检测(NDT)的应用。目前基于阵列的成像技术采用基于开关或频率偏移的设计。这些设计受到硬件复杂性增加的影响,并且在基于开关的系统中,测量时间更长。利用正交编码技术允许阵列同时发送和接收许多元素,这减少了测量时间并简化了系统硬件,因为代码是在软件中生成和处理的。本文讨论了所提出的成像技术背后的理论,并展示了一个用于创建目标微波SAR图像的概念验证系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multistatic Microwave Synthetic Aperture Radar (SAR) Imaging Using Orthogonal Binary Coding
The utilization of orthogonal binary phase shift keying (BPSK) modulation in a microwave synthetic aperture radar (SAR) imaging system is a novel technique that reduces the complexity of system hardware and expedites the measurement process for large imaging arrays. BPSK techniques are commonly used in ranging and communications, where transmitting multiple signals without interference is important. This methodology can also be applied to multistatic SAR imaging, allowing an imaging array to simultaneously gather data from all transmit/receive pairs. These measurements can then be processed with a robust SAR imaging algorithm, resulting in real-time generation of 3D images for a variety of applications including those involving nondestructive testing (NDT). Current array-based imaging techniques utilize switch-based or frequency offset designs. These designs suffer from increased hardware complexity, and in the case of switch-based systems, longer measurement times. Utilizing orthogonal coding techniques allows an array to transmit and receive from many elements simultaneously, which reduces measurement time and simplifies system hardware, since the codes are generated and processed in software. This paper discusses the theory behind the proposed imaging technique and shows a proof of concept system that was used to create microwave SAR images of targets.
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