Graduate School of Engineering, University of Toyama, 3190 Gofuku, Toyama 930-8555, Japan.
Sensors (Basel). 2023 Mar 9;23(6):2959. doi: 10.3390/s23062959.
To ensure high-reliability communication in healthcare networks, this paper presents a smart gateway system that includes an angle-of-arrival (AOA) estimation and a beam steering function for a small circular antenna array. To form a beam toward healthcare sensors, the proposed antenna estimates the direction of the sensors utilizing the radio-frequency-based interferometric monopulse technique. The fabricated antenna was assessed based on the measurements of complex directivity and the over-the-air (OTA) testing in Rice propagation environments using a two-dimensional fading emulator. The measurement results reveal that the accuracy of the AOA estimation agrees well with that of the analytical data obtained through the Monte Carlo simulation. This antenna is embedded with a beam steering function employing phased array technology, which can form a beam spaced at 45° intervals. The ability of full-azimuth beam steering with regard to the proposed antenna was evaluated by beam propagation experiments using a human phantom in an indoor environment. The received signal of the proposed antenna with beam steering increases more than that of a conventional dipole antenna, confirming that the developed antenna has great potential of achieving high-reliability communication in a healthcare network.
为确保医疗网络中的高可靠性通信,本文提出了一种智能网关系统,该系统包括角度到达(AoA)估计和小型圆形天线阵列的波束转向功能。为了针对医疗传感器形成波束,所提出的天线利用基于射频的干涉式单脉冲技术来估计传感器的方向。基于复杂方向性的测量和在 Rice 传播环境中使用二维衰落模拟器进行的空中(OTA)测试,对制造的天线进行了评估。测量结果表明,AoA 估计的准确性与通过蒙特卡罗模拟获得的分析数据吻合较好。该天线嵌入了具有相控阵技术的波束转向功能,可形成间隔 45°的波束。通过在室内环境中使用人体模型进行的波束传播实验,评估了针对所提出的天线的全向波束转向能力。具有波束转向的所提出天线的接收信号比传统偶极天线的接收信号增加了很多,这证实了所开发的天线在医疗网络中实现高可靠性通信方面具有很大的潜力。