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A battery-less BLE smart sensor for room occupancy tracking supplied by 2.45-GHz wireless power transfer

机译:较少的电池BLE智能传感器,适用于房间占用跟踪,提供2.45 GHz无线电源转移

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Wireless power transfer (WPT) has emerged as a solution for supplying smart sensors for long-term battery less deployment. Because the amount of power harvested by the smart sensor is limited due to WPT path loss, the optimization objective is twofold: achieving ultra-low-power operation for the sensing task and improving the harvesting efficiency even at low incident power. In this paper, we focus on the use case of a Bluetooth LE connected motion detection system supplied by 2,45-GHz RF power. The full system (RF energy harvester, power management, sensor transducer and interface, control, data processing and wireless transmission) is implemented using low-power off-the-shelf components. In the sensing sub-system, ultra-low-power operation is achieved by the duty-cycling of the sensor interface and by an event-driven scheme for communication. In the harvesting sub-system, the design of the matching network and rectifier, combined with maximum power point tracking (MPPT), is optimized for increasing the power harvesting efficiency (PHE) at low incident power. Measurements show a total reduction in the power consumption for the sensing sub-system by a factor 20. When using custom WPT waveform with high peak-to-average power ratio, the RF energy harvester is functional with an incident RF power starting from -20 dBm. The smart sensor is able to perform its motion-detection task with an incident power as low as -17.3 dBm.
机译:无线电源传输(WPT)作为提供用于长期电池的智能传感器的解决方案,较少部署。由于智能传感器收获的功率量因WPT路径损耗而受到限制,所以优化目标是双重的:实现传感任务的超低功耗操作,即使在低入射功率下也提高了收获效率。在本文中,我们专注于用2,45Go-GHz RF功率提供的蓝牙LE连接运动检测系统的用例。完整的系统(RF能量收割机,电源管理,传感器传感器和接口,控制,数据处理和无线传输)使用低功耗从架组件实现。在传感子系统中,通过传感器接口的核心循环和通过事件驱动的方案来实现超低功耗操作。在收获子系统中,匹配网络和整流器的设计与最大功率点跟踪(MPPT)相结合,用于提高低入射功率的功率收集效率(PHE)。测量显示了对传感子系统的功耗的总减少因素20.当使用具有高峰平均功率比的自定义WPT波形时,RF能量收割机与入射的RF功率从-20开始功能DBM。智能传感器能够以低至-17.3 dBm的情况下执行其运动检测任务。

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