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Potential of Sub-GHz Wireless for Future IoT Wearables and Design of Compact 915 MHz Antenna

机译:未来IoT可穿戴设备和紧凑型915 MHz天线设计的Sub-GHz无线潜力

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摘要

Internet of Things (IoT) technology is rapidly emerging in medical applications as it offers the possibility of lower-cost personalized healthcare monitoring. At the present time, the 2.45 GHz band is in widespread use for these applications but in this paper, the authors investigate the potential of the 915 MHz ISM band in implementing future, wearable IoT devices. The target sensor is a wrist-worn wireless heart rate and arterial oxygen saturation (SpO2) monitor with the goal of providing efficient wireless functionality and long battery lifetime using a commercial Sub-GHz low-power radio transceiver. A detailed analysis of current consumption for various wireless protocols is also presented and analyzed. A novel 915 MHz antenna design of compact size is reported that has good resilience to detuning by the human body. The antenna also incorporates a matching network to meet the challenging bandwidth requirements and is fabricated using standard, low-cost FR-4 material. Full-Wave EM simulations are presented for the antenna placed in both free-space and on-body cases. A prototype antenna is demonstrated and has dimensions of 44 mm × 28 mm × 1.6 mm. The measured results at 915 MHz show a 10 dB return loss bandwidth of 55 MHz, a peak realized gain of −2.37 dBi in free-space and −6.1 dBi on-body. The paper concludes by highlighting the potential benefits of 915 MHz operation for future IoT devices.
机译:物联网(IoT)技术在医疗应用中迅速兴起,因为它提供了低成本个性化医疗保健监控的可能性。目前,2.45 GHz频段已广泛用于这些应用程序,但是在本文中,作者研究了915 MHz ISM频段在实施未来可穿戴式IoT设备方面的潜力。目标传感器是腕戴式无线心率和动脉血氧饱和度(SpO2)监视器,目标是使用商用的Sub-GHz低功耗无线电收发器提供高效的无线功能和较长的电池寿命。还提供并分析了各种无线协议的电流消耗的详细分析。据报道,新颖的紧凑型915 MHz天线设计对人体的失谐具有良好的弹性。该天线还包含一个匹配网络,可满足具有挑战性的带宽要求,并使用标准的低成本FR-4材料制成。针对放置在自由空间和人体情况下的天线,提出了全波电磁仿真。演示了原型天线,其尺寸为44 mm×28 mm×1.6 mm。在915 MHz处的测量结果显示,回波损耗带宽为55 MHz,在自由空间中的峰值实现增益为-2.37 dBi,在人体上为-6.1 dBi。本文通过重点介绍915 MHz操作对未来物联网设备的潜在优势进行了总结。

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