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Development and experimental validation of self-powered wireless vibration sensor node using vibration energy harvester

机译:使用振动能量收割机的自动无线振动传感器节点的开发与实验验证

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This paper deals with development of a self-powered solution for wireless vibration sensing. An autonomous operation of the proposed vibration sensor node is based on an electromagnetic energy harvesting device which converts kinetic energy of ambient mechanical vibration. Moreover, mechanical vibrations are monitored via electric signal from a piezoelectric patch and the measured signal is transmitted to the monitoring unit. The electromagnetic energy harvester is designed to provide enough power for a signal processing unit and a communication module, enabling the system to operate as a self-powered wireless vibration sensor node. Operation of this system was experimentally validated in laboratory environment and examples of vibration monitoring are presented. There is a significant restriction in terms of operation in resonance regime, where the generated power of the kinetic energy harvester is maximal and sufficient for limitless operation of the node. Main aim of this paper is to present a complex system which could be used in many engineering applications, such as aerospace, transportation, or civil structure monitoring.
机译:本文涉及开发无线振动传感的自动解决方案。所提出的振动传感器节点的自主操作基于电磁能量收集装置,其转换环境机械振动的动能。此外,通过来自压电贴片的电信号监测机械振动,并且测量的信号被传输到监控单元。电磁能量收割机被设计为为信号处理单元和通信模块提供足够的电力,使得系统能够作为自动无线振动传感器节点操作。该系统的操作在实验室环境中实验验证,并提出了振动监测的例子。在共振状态下的操作方面存在显着的限制,其中动能收割机的产生功率是最大的并且足以用于节点的无限操作。本文的主要目的是提供一种复杂的系统,可用于许多工程应用,例如航空航天,运输或民间结构监测。

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