Waveform design principles for automotive radar systems

H. Rohling, M. Meinecke
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引用次数: 211

Abstract

This paper presents a high performance 77 GHz FMCW radar sensor for automotive applications. Powerful automotive radar systems are currently under development for various applications. Radar sensor based comfort systems like Adaptive Cruise Control (ACC) are already available on the market. The main objective from a radar sensor point of view is to detect all targets inside the observation area and estimate target range and relative velocity simultaneously with a high update rate. FMCW radar sensors have the advantages of very high range resolution but a serious task occurs in multiple target situations to suppress so-called ghost targets. In classical FMCW waveforms this has been solved in using multiple chirp signals with different slope. But in this case a long measurement time (approximately 50 ms) is needed which is a contradiction to a high update rate. Therefore, in this paper a new waveform design is presented which has all advantages of FMCW radars but needs an extremely low measurement time (10 ms) in a radar sensor with 3 different antenna beams.
汽车雷达系统波形设计原理
介绍了一种用于汽车的高性能77 GHz FMCW雷达传感器。强大的汽车雷达系统目前正在开发用于各种应用。基于雷达传感器的舒适系统,如自适应巡航控制(ACC)已经在市场上可用。从雷达传感器的角度来看,其主要目标是同时检测到观测区域内的所有目标,并以较高的更新率估计目标距离和相对速度。FMCW雷达传感器具有非常高的距离分辨率,但在多目标情况下抑制所谓的幽灵目标是一个严峻的任务。在经典的FMCW波形中,这个问题可以通过使用多个不同斜率的啁啾信号来解决。但是在这种情况下,需要很长的测量时间(大约50毫秒),这与高更新率是矛盾的。因此,本文提出了一种新的波形设计,它具有FMCW雷达的所有优点,但在具有3种不同天线波束的雷达传感器中需要极低的测量时间(10 ms)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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