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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A 77-GHz Cooperative Radar System Based on Multi-Channel FMCW Stations for Local Positioning Applications
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A 77-GHz Cooperative Radar System Based on Multi-Channel FMCW Stations for Local Positioning Applications

机译:基于多通道FMCW站的77 GHz协作雷达系统,用于本地定位

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摘要

In this paper, a radar system for local positioning applications is presented. The system consists of frequency modulated continuous-wave (FMCW) stations operating in W-band that are loosely coupled using time-delayed ramp start signals. A centralized signal processing approach allows to relax the required synchronization accuracy between the stations and further leads to a cancellation of phase noise and phase distortions caused by imperfect FMCW ramps. All stations are equipped with an antenna array and multiple receivers. Thus, a signal processing approach is developed in this work that combines the positive effects from the centralized processing with the information from the antenna array in a digital-beamforming based approach to improve the multipath robustness of the overall system. The developed theory is confirmed in measurements carried out with a prototype system consisting of two stations. Various measurements in multipath environments confirm the improved robustness leading to a worst-case root-mean-square position error of 15 mm under strong multipath conditions which were simulated inside an anechoic chamber.
机译:<?Pub Dtl?>本文介绍了一种用于本地定位应用的雷达系统。该系统由工作在W波段的调频连续波(FMCW)电台组成,它们使用延时斜坡启动信号进行松散耦合。集中式信号处理方法可以放宽站点之间所需的同步精度,并进一步消除由不完善的FMCW斜坡引起的相位噪声和相位失真。所有电台都配备了天线阵列和多个接收器。因此,在这项工作中开发了一种信号处理方法,该方法将集中处理的积极效果与天线阵列的信息相结合,形成了基于数字波束形成的方法,从而提高了整个系统的多径鲁棒性。在由两个站组成的原型系统进行的测量中证实了开发的理论。在多径环境中进行的各种测量结果均证实了改进的鲁棒性,从而在强回声室内模拟的强多径条件下导致了最坏情况的均方根位置误差为15 mm。

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