视障人士半柔性PCB可穿戴雷达系统设计

Haoran Zhang, Yiming Yang, Jiahao Zhou, A. Shamim
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引用次数: 1

摘要

提出了一种基于半柔性印刷电路板(PCB)的小型可穿戴调频连续波雷达,用于防撞系统。这可以使视障人士在日常生活中更好、更安全地感知环境。在所提出的设计中,设计了一个多输入多输出(MIMO)天线阵列,该天线阵列具有四个接收器(RXs)和三个发射器(TXs),通过特定的几何结构在水平和垂直平面上实现障碍物检测能力。提出了一种工作在76 ~ 81 GHz的宽波束耦合贴片天线,用于RXs和TXs的每个通道,每个通道都有两个寄生贴片。在雷达芯片AWR1843中实现了对中频信号的快速傅里叶变换(FFT)算法,以高灵敏度生成距离-多普勒图并搜索精确的目标角度。整个系统包括MIMO天线阵列和雷达芯片电路,采用六层半柔性PCB,以确保紧凑性和易于穿戴性。对整个系统进行了现场测试,获得了7米(人类)和19米(较大物体)的障碍物检测范围。还实现了64度侧面视图(±32°)的广角检测范围。还集成了一个语音模块,向视障人士传递障碍物的距离和角度信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wearable Radar System Design on Semi-Flexible PCB for Visually Impaired People
This paper presents a compact and wearable frequency-modulated continuous-wave (FMCW) radar on a semi-flexible printed circuit board (PCB) for an anti-collision system. This can enable visually impaired people to perceive their environment better and more safely in their everyday lives. In the proposed design, a multiple-input multiple-output (MIMO) antenna array with four receivers (RXs) and three transmitters (TXs) has been designed to achieve obstacle-detection ability in both horizontal and vertical planes through a specific geometrical configuration. Operating at 76–81 GHz, an aperture coupled wide-beam patch antenna with two parasitic patches is proposed for each channel of RXs and TXs. The fast Fourier transform (FFT) algorithm has been implemented in the radar chip AWR1843 for intermediate frequency (IF) signals to generate a range-Doppler map and search precise target angles in high sensitivity. The complete system, which includes both the MIMO antenna array and the radar chip circuit, is utilized on a six-layer semi-flexible PCB to ensure compactness and ease in wearability. Field testing of the complete system has been performed, and an obstacle-detection range of 7 m (for humans) and 19 m (for larger objects) has been obtained. A wide angular detection range of 64-degree broadside view (±32°) has also been achieved. A voice module has also been integrated to deliver the obstacle’s range and angle information to visually impaired persons.
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CiteScore
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