首页> 外文会议>IEEE MTT-S International Conference on Microwaves for Intelligent Mobility >A novel UWB chirp sequence radar signal processing concept for chipless RFID based vehicle localization
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A novel UWB chirp sequence radar signal processing concept for chipless RFID based vehicle localization

机译:基于无芯片RFID的车辆定位的UWB线性调频序列雷达信号处理新概念

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Localization of vehicles in industrial environments is a challenging task due to the high demands on the radar system because of harsh environmental conditions and strong multipath propagation. Chipless radio identification (RFID) is well suited for this type of task due to its low-cost production and extreme robustness against environmental influences. Furthermore, RFID transponders based on time domain reflectometry can be interrogated by chirp sequence radar systems. To achieve high data capacities and acceptable tag dimensions, we use an ultra-wideband system. High integration/measurement times that are reasonable yield increased velocity resolution and sufficient signal-to-noise ratios. If a 2D-FFT-based processing step is applied, the high measurement time combined with the high relative bandwidth lead to a smearing in velocity and range dimensions, which significantly diminishes system performance. We first investigate the reasons for this effect, which prevents the TDR RFID transponder from being decoded, and then propose appropriate remedial action. We verify the applicability of the presented UWB chirp sequence processing technique to localize vehicles using chipless RFID by experiments in a laboratory.
机译:由于恶劣的环境条件和强大的多径传播,对雷达系统的要求很高,因此在工业环境中对车辆进行本地化是一项艰巨的任务。无芯片无线电识别(RFID)由于其低成本的生产和对环境影响的极强耐用性而非常适合此类任务。此外,线性调频序列雷达系统可以询问基于时域反射法的RFID应答器。为了获得高数据容量和可接受的标签尺寸,我们使用了超宽带系统。高积分/测量时间可以合理地提高速度分辨率和足够的信噪比。如果应用基于2D-FFT的处理步骤,那么高的测量时间和高的相对带宽会导致速度和范围尺寸的模糊,这会大大降低系统性能。我们首先研究造成这种影响的原因,这会阻止TDR RFID应答器被解码,然后提出适当的补救措施。我们通过实验室的实验验证了所提出的UWB线性调频序列处理技术在使用无芯片RFID定位车辆方面的适用性。

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