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首页> 外文期刊>Journal of Vibration and Acoustics >Generalized Solutions of Piezoelectric Vibration-Based Energy Harvesting Structures Using an Electromechanical Transfer Matrix Method
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Generalized Solutions of Piezoelectric Vibration-Based Energy Harvesting Structures Using an Electromechanical Transfer Matrix Method

机译:机电传递矩阵法基于压电振动的能量收集结构的广义解

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摘要

Piezoelectric vibration-based energy harvesting (pVEH) offers much potential as renewable energy structures. Within the literature, often geometry-specific models are developed, making designs of new structures difficult. In this work, a generalized linear algebraic method is developed. The method incorporates the transfer matrix method (TMM) into the well-accepted distributed parameter electromechanical model for a composite-piezoelectric, Euler-Bernoulli beam. The result is an electromechanical TMM which is highly accurate at predicting both structural and energy harvesting performan-ces for a wide variety of designs which have chainlike topologies. A simplification is made within the method to model structures which operate solely within bending modes, reducing the computation to analyses of only four-by-four state transition matrices, regardless of structural complexity. As many applications aim to optimize the large bending mode piezoelectric effect, this simplification does not limit the versatility of the method. To demonstrate the validity of this statement, comparisons were performed to evaluate the accuracy of the method's predictions for six piezoelectric topologies, including a unimorph without a tip mass, a bimorph with a tip mass, several partial-length bimorphs without a tip mass, and three different multibeam bimorph structures with inline and folded-back designs. The results show differences no greater than 2.24% for the first and second natural frequencies of the structures. Likewise, the method yields excellent predictions for the mode shapes, their slopes, and the voltage frequency responses, especially within the ± 10% bounds of the natural frequencies. Thus, the future design of new structures is shown to be simplified using this generalizable method.
机译:基于压电振动的能量收集(pVEH)具有可再生能源结构的巨大潜力。在文献中,经常开发特定于几何的模型,这使得新结构的设计变得困难。在这项工作中,开发了一种广义的线性代数方法。该方法将传递矩阵法(TMM)纳入了公认的复合压电Euler-Bernoulli束的分布式参数机电模型。结果是产生了一种机电TMM,该TMM在预测具有链状拓扑的多种设计的结构和能量收集性能方面均非常准确。在该方法内进行了简化以对仅在弯曲模式下运行的结构进行建模,从而将计算量减少到仅分析四乘四状态转换矩阵,而与结构复杂性无关。由于许多应用旨在优化大弯曲模式的压电效应,因此这种简化并不限制该方法的多功能性。为了证明该说法的有效性,进行了比较以评估该方法对六个压电拓扑结构的预测的准确性,包括不带尖端质量的单压电晶片,带尖端质量的双压电晶片,不带尖端质量的多个部分长度双压电晶片以及具有内联和折回设计的三种不同的多光束双压电晶片结构。结果表明,结构的第一和第二固有频率的差异不大于2.24%。同样,该方法对模态形状,其斜率和电压频率响应(尤其是在固有频率的±10%范围内)产生了出色的预测。因此,使用这种通用方法可以简化新结构的未来设计。

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  • 来源
    《Journal of Vibration and Acoustics》 |2016年第4期|041001.1-041001.12|共12页
  • 作者单位

    Department of Mechanical and Aerospace Engineering, Cornell University, 226 Upson Hall, Ithaca, NY 14853;

    Department of Mechanical and Aerospace Engineering, George Washington University, 800 22nd Street, NW Suite 729, Washington, DC 20052;

    Department of Mechanical and Aerospace Engineering, Cornell University, 224 Upson Hall, Ithaca, NY 14853;

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