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首页> 外文期刊>Journal of intelligent material systems and structures >Self-powered Wireless Health Monitoring Supplied by Synchronized Switch Harvesting (SSH) Method
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Self-powered Wireless Health Monitoring Supplied by Synchronized Switch Harvesting (SSH) Method

机译:同步开关收集(SSH)方法提供的自供电无线健康监控

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The development of autonomous wireless sensors and actuators in order to design advanced structural health monitoring (SHM) systems is an exciting challenge for both the industrial and the academic communities. Some studies have dealt with the implementation of wireless devices. Almost all the studies about so-called autonomous systems today still require power supply. It means that a fully self-powered system has not been achieved yet. The present study shows the design of self-powered wireless health monitoring system, for which the energy is supplied by the original method called the synchronized switch harvesting (SSH) method. The piezoelectric elements and electrical circuit, located on the vibrating structure, harvest electrical energy from the direct conversion of mechanical energy vibration. Lamb wave transmission is chosen for the SHM of a composite beam of length around 30 cm. Some piezoelectric elements, used for energy harvesting and signal transmission, are located on the beam. The energy required to wake-up the micro-controller and to achieve two complete transmission cycles is only 1.5 mJ. This small amount of energy can be harvested in a short time period for reasonable beam displacement levels. The study details the different trade-off concerning such a self-powered health monitoring device.
机译:为了设计先进的结构健康监测(SHM)系统,自主无线传感器和执行器的开发对于工业界和学术界都是一个令人兴奋的挑战。一些研究涉及无线设备的实现。如今,几乎所有有关所谓的自治系统的研究都仍然需要电源。这意味着尚未实现完全自供电的系统。本研究显示了自供电无线健康监控系统的设计,该系统的能量由称为同步开关收集(SSH)方法的原始方法提供。位于振动结构上的压电元件和电路从机械能振动的直接转换中收集电能。选择兰姆波传输作为30厘米左右长度的复合梁的SHM。一些用于能量收集和信号传输的压电元件位于梁上。唤醒微控制器并实现两个完整的传输周期所需的能量仅为1.5 mJ。可以在短时间内收集到少量能量,以获得合理的光束位移水平。该研究详细介绍了有关这种自供电健康监控设备的不同权衡。

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