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SELF-POWERED SENSING SYSTEM FOR THE MONITORING OF QUASI-STATIC STRUCTURAL RESPONSE

机译:自力感应系统,用于准静态结构响应监测

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Many signals of interest in the assessment of structural systems lie in the quasi-static range (frequency <<1Hz). This poses a significant challenge for the development of self-powered sensors that are required not only to monitor these events but also to harvest the energy for sensing, computation and storage from the signal being monitored. This paper combines the use of mechanically-equivalent frequency modulators and piezo-powered threshold detection modules capable of computation and data storage with a total current less than 10nA. The system is able to achieve events counting for input deformations at frequencies lower than 0.1 Hz. The used mechanically-equivalent frequency modulators allow the transformation of the low-amplitude and low-rate quasi-static deformations into an amplified input to a piezoelectric transducer. The sudden transitions in unstable mode branch switching, during the elastic postbuckling response of slender columns and plates, are used to generate high-rate deformations. Experimental results show that an oscillating semi-crystalline plastic polyvinylidene fluoride (PVDF), attached to the up-converting modules, is able to generate a harvestable energy at levels between 0.8μJ to 2μJ. In this work, we show that a linear injection response of our combined frequency up-converter / piezo-floating-gate sensing system can be used for self-powered measurement and recording of quasi-static deformations levels. The experimental results demonstrate that a sensor fabricated in a 0.5-μm CMOS technology can count and record the number of quasi-static input events, while operating at a power level significantly lower than 1 μW.
机译:在评估结构系统时,许多感兴趣的信号都在准静态范围内(频率<< 1Hz)。这对开发自供电传感器提出了重大挑战,该传感器不仅需要监视这些事件,而且还需要从被监视的信号中收集能量以进行传感,计算和存储。本文结合了机械等效变频器和压电供电阈值检测模块的使用,这些模块能够进行计算和数据存储,总电流小于10nA。该系统能够对低于0.1 Hz的频率下的输入变形进行事件计数。所使用的机械等效频率调制器允许将低振幅和低速率的准静态变形转换为压电换能器的放大输入。在细长柱和板的弹性后屈曲响应期间,不稳定模式分支切换中的突然转变用于产生高速率变形。实验结果表明,连接到上转换模块的振荡半结晶塑料聚偏二氟乙烯(PVDF)能够产生0.8μJ至2μJ的可收集能量。在这项工作中,我们证明了组合式上变频器/压电浮栅传感系统的线性注入响应可用于自供电测量和记录准静态变形水平。实验结果表明,以0.5μmCMOS技术制造的传感器可以计数并记录准静态输入事件的数量,而其功率水平则大大低于1μW。

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