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Duty-Cycled, Sub-GHz Wake-up Radio with -95dBm Sensitivity and Addressing Capability for Environmental Monitoring Applications

机译:具有-95dBm敏感性的税务,子GHz唤醒无线电和环境监测应用的寻址能力

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A novel approach for duty-cycled wake-up radios (WuRs) is proposed with focus on environmental monitoring applications involving wireless sensing devices left unattended in harsh conditions. In this scenario, a higher data latency (on the order of seconds or minutes) is potentially acceptable if significant improvements are achieved in terms of a) communication range, b) reliability, and c) energy-efficiency. The solution is solely based on off-the-shelf components with two main novelties implemented by software. First, the Receiver Bandwidth Filter of a commercial sub-GHz radio transceiver is configured with a small value typically not used in data communications (e.g., 9.5 kHz). Such action leads to a higher reliability of the WuR operation in outdoors where longer distances are involved and multiple signal interfering factors may be present. Second, the WuR addressing feature is achieved at the analog domain without requiring data decoding of any symbol. Nonetheless, more than 1,000 nodes can still be individually awoken with the proposed solution considering the 915MHz-ISM band. The preliminary empirical results from five outdoors sites involving more than 30 nodes show no false-positives and less than 3% of false-negative cases for distances higher than 225m and non line-of-sight (NLOS) and obstructed line-of-sight (OLOS) due to vegetation, rocks, and topography. By accepting a longer wake-up latency (e.g., 1 minute), the proposed solution which combines WuR and duty-cycling techniques can excel existing commercial WUR solutions in terms of energy-efficiency by more than one order of magnitude.
机译:为工作循环唤醒无线电(WuRs)的新方法,提出了用焦点上涉及无线感测装置留在恶劣条件下无人环境监测应用。在这种情况下,如果显著改进的)通信范围,b)中的可靠性,以及c)能量效率方面取得了较高的数据等待时间(几秒或几分钟的数量级)是潜在可接受。该解决方案完全基于由软件实现两个主要的新奇现成的,现成的组件。首先,收发器被配置成与通常不在数据通信(例如,9.5千赫兹)中使用的较小的值商用亚GHz无线电接收机带宽滤波器。这样的动作导致在更长的距离是参与和多个信号干扰因素可以存在户外WUR操作的更高的可靠性。其次,WUR寻址功能在模拟域中,而不需要任何数据符号进行解码而实现。然而,超过1000个节点仍然可以单独提出的方案考虑的915MHz的ISM频段唤醒。从涉及超过30个节点5个户外网站的初步实验结果表明无假阳性和比225米和线的非视距(NLOS)较高的距离和阻碍线的视线的假阴性的情况下,小于3% (OLOS)由于植被,岩石,和地形。通过接受较长的唤醒等待时间(例如,1分钟),所提出的解决方案,它结合了WUR和占空循环技术可以通过练成幅度超过一个数量级在现有的能量效率方面的商业WUR解决方案。

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