CMOS芯片工艺变化对雷达波束形成的影响

E. Bakken, T. Lande, S. Holm
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引用次数: 1

摘要

单片CMOS雷达收发器的引入为近距离波束形成的低成本系统提供了可能。凭借低重量、低功耗和低成本的优势,单芯片雷达可能会彻底改变一系列近距离成像应用,如地雷探测、穿透墙壁成像甚至医学成像。然而,为了实时产生高质量的雷达图像,仍有一些挑战需要克服。其中一个主要挑战在于控制CMOS工艺,以产生确定性,均匀和可重复的延迟线,用于在非常高的频率下采样接收信号。本文概述了可能导致雷达图像质量降低的误差来源,特别关注由过程变化引起的非均匀样本延迟的影响。最后,提出了一种直接标定的方法,修正了部分质量退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of process variations in CMOS chips for radar beamforming
The introduction of single chip CMOS radar transceivers offers the possibility of a low cost system for beamforming at close range. With the benefits of low weight, low power and low cost, single chip radars stand to possibly revolutionize a range of close range imaging applications such as land mine detection, through wall imaging and even medical imaging. There are, however some challenges that remain to be overcome in order to produce high quality radar images in real time. One of the main challenges lies in control over the CMOS process to produce a deterministic, uniform and reproducible delay line for sampling the received signal at a very high frequency. This paper gives an overview of possible error sources contributing to the lowering of quality of a radar image with particular focus on the effect of non-uniform sample delays caused by process variations. Finally, a method of direct calibration is presented that corrects some of the quality degradation.
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