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Operation of battery-less and wireless sensor using magnetic resonance based wireless power transfer through concrete

机译:使用基于磁共振的无线电力通过混凝土进行无电池无线传感器的操作

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Although the deployment of wireless sensors for structural sensing and monitoring is becoming popular, supplying power to these sensors remains as a daunting task. To address this issue, there have been large volume of ongoing energy harvesting studies that aimed to fmd a way to scavenge energy from surrounding ambient energy sources such as vibration, light and heat. In this study, a magnetic resonance based wireless power transfer (MR-WPT) system is proposed so that sensors inside a concrete structure can be wirelessly powered by an external power source. MR-WPT system offers need-based active power transfer using an external power source, and allows wireless power transfer through 300-mm thick reinforced concrete with 21.34% and 17.29% transfer efficiency at distances of 450 mm and 500 mm, respectively. Because enough power to operate a typical wireless sensor can be instantaneously transferred using the proposed MR-WPT system, no additional energy storage devices such as rechargeable batteries or supercapacitors are required inside the wireless sensor, extending the expected life-span of the sensor.
机译:尽管用于结构感测和监视的无线传感器的部署变得越来越流行,但是向这些传感器供电仍然是艰巨的任务。为了解决这个问题,正在进行大量的能量收集研究,旨在寻找一种从周围环境能源(例如振动,光和热)中清除能量的方法。在这项研究中,提出了一种基于磁共振的无线电力传输(MR-WPT)系统,以便混凝土结构内部的传感器可以由外部电源无线供电。 MR-WPT系统使用外部电源提供基于需求的有功功率传输,并允许通过300毫米厚的钢筋混凝土进行无线功率传输,分别在450毫米和500毫米的距离上具有21.34%和17.29%的传输效率。由于可以使用建议的MR-WPT系统即时传输足够的功率来运行典型的无线传感器,因此无线传感器内部不需要其他能量存储设备(例如可充电电池或超级电容器),从而延长了传感器的预期使用寿命。

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