利用 Wi-Fi 信道的超低功耗无线传感系统
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TH89 TN926

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国家自然科学基金(61973217)项目资助


An ultra-low-power wireless sensor system using Wi-Fi channels
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    摘要:

    现有的无线传感系统的传感节点需要主动发射射频电磁波进行数据传输,功耗高;利用反向散射调制的无源无线传感 系统需要高成本专用阅读器,应用受限。 针对上述问题,本文提出利用 Wi-Fi 信道的无线传感系统,用反向散射调制将传感数 据调制于 Wi-Fi 设备发射的信号中,影响 Wi-Fi 信道参数。 使用 Wi-Fi 接收设备获取信道状态信息,通过支持向量机训练识别 传感数据的检测器,实现无需专用阅读器的超低功耗无线传感系统。 用路由器、无线网卡、传感节点搭建无线温度传感系统,传 感节点最高功耗不超过 350 μW,安装无线网卡的 Wi-Fi 接收设备可读取传感节点距路由器 5 m 内,以 200 bit / s 速率传输的传 感数据。 该系统为智能家居、可穿戴设备等应用的超低功耗无线传感需求提供了有效解决方案。

    Abstract:

    The sensor nodes of existing wireless sensor systems require actively generated radio frequency electromagnetic waves for data transmission, which leads to high power consumption. Passive wireless sensor systems that use backscattering modulation technology require high-cost dedicated readers, which results in limited applications. To solve these problems, this article proposes an ultra-lowpower wireless sensor system that manipulates the Wi-Fi channels. The designed system modulates the sensing data into the signals transmitted by the Wi-Fi device using backscattering modulation, which affects the parameters of the Wi-Fi channels. The system achieves ultra-low-power wireless sensing without a dedicated reader by using a Wi-Fi receiving device to obtain channel state information and training a machine learning detector capable of demodulating sensing data through the support vector machine. The wireless temperature sensing system is established using a router, a wireless network card, and a wireless sensor node. The maximum power consumption of the wireless sensor node is less than 350 μW. The Wi-Fi receiving device that employs a wireless network card can read the sensing data transmitted at 200 bit / s when the wireless sensor node is within 5 m of the router. The system provides an effective solution and satisfies the demand for ultra-low-power wireless sensors in smart homes, wearable devices, and other applications.

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冯笑晨,邵 壮,文玉梅,李 平,王 遥.利用 Wi-Fi 信道的超低功耗无线传感系统[J].仪器仪表学报,2021,(9):131-140

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  • 在线发布日期: 2023-06-28
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