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Remote Control System for Battery-Assisted Devices with 16 nW Standby Consumption

机译:具有16个NW备用消耗的电池辅助设备的遥控系统

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摘要

One of the biggest impacts of the vision ‘Internet of Things’ is the massive number of connected devices, where billions of nodes will exchange data, information and commands. While wireless systems offer advantages such as increased flexibility, they also introduce one major challenge: how to power each individual node. In many cases, there is no way around the use of batteries. To minimize the environmental impact, increasing the battery’s longevity is the most important factor. This paper introduces a wireless battery-assisted node that has a drastically reduced energy consumption in the standby mode. The state (on/off) will be changed by harvesting a radiofrequency signal. A latching switch connects or disconnects the load—for example, a microcontroller—and the battery. The switch is connected to a charge pump which converts an AC (alternating current) signal into a usable DC (direct current) control signal. An antenna is mounted to the charge pump via a matching network. An electromagnetic wave is emitted by a remote control switch that switches the system on and off. The used frequency is 868 MHz and therefore in the UHF RFID (ultra high frequency radio frequency identification) band. The measurement results show that the wireless node consumes less than 16 nW in the standby mode. The remote controlling is possible from a distance of more than 12 m . The presented system can be integrated in further work on a UHF RFID tag. Thus, the existing protocol standard can be used to identify the object to be switched. By custom commands, the switching request can be transmitted from the remote control (UHF RFID reader) to the switching node.
机译:Vision Internet Internet Internet's Internet'的最大影响之一是大量的连接设备,其中数十亿节点将交换数据,信息和命令。虽然无线系统提供了更高的灵活性,但它们也引入了一个主要挑战:如何为每个单独的节点供电。在许多情况下,围绕使用电池没有办法。为了尽量减少环境影响,增加电池的寿命是最重要的因素。本文介绍了一种无线电池辅助节点,其在待机模式下具有急剧降低的能量消耗。通过收获射频信号来改变状态(开/关)。锁定开关连接或断开负载 - 例如,微控制器和电池。该开关连接到电荷泵,电荷泵将AC(交流电流)信号转换为可用的DC(直流)控制信号。天线通过匹配网络安装到电荷泵。电磁波由遥控开关发射,该开关打开和关闭系统。二手频率为868 MHz,因此在UHF RFID(超高频射频识别)带中。测量结果表明,无线节点在待机模式下消耗小于16个NW。远程控制可以从12米以上的距离。呈现的系统可以集成在UHF RFID标签上的进一步工作中。因此,现有协议标准可用于识别要切换的对象。通过自定义命令,可以从遥控器(UHF RFID读取器)发送到交换节点的交换请求。

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