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Nonlinear analysis of a piezoelectric energy harvester in body undulatory caudal fin aquatic unmanned vehicles

机译:人体波状尾鳍水上无人飞行器中压电能量采集器的非线性分析

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Body caudal fin (BCF) locomotion aquatic unmanned vehicles (AUVs) are making critical transitions to full autonomous systems but have challenge in endurance. Therefore, engineering solutions need to be found to maximize the mission capability of these systems. The body actuation of these AUVs offers a platform for a piezoelectric energy harvester to scavenge electrical energy from the mechanical motion. The motion of the animals which these AUVs are inspiring from can be represented in a spatio-temporal function with different envelope constraints to represent an Anguilliform, Subcarangiform, Carangiform, and Thunniform motion. A better approximation of the strain is accounted for by considering the higher-order nonlinear terms due to the large deformation of these systems. Gibbs function is utilized to better approximate the nonlinear constitutive relations of the piezoelectric material. Parametric studies are carried out to investigate how the nonlinear strain and nonlinear piezoelectric material properties affects the performance of the BCF energy harvesters under each motion for various length and placement conditions. The results show that considering the higher-order strain is needed due to the underestimation of the harvested power when linear assumptions are employed for these types of undulatory motion. It is shown that assuming that load resistance, R-opt approximate to 1/C-p omega, over-approximates the resistance for the nonlinear piezoelectric material model. This analysis shows the importance of including the nonlinearities due to the piezoelectric material and large deformations in order to accurately estimate the levels of the harvested power and its optimal configuration.
机译:人体尾鳍(BCF)运动型水上无人飞行器(AUV)正在向完全自治的系统过渡,但在耐力方面面临挑战。因此,需要找到工程解决方案以最大化这些系统的任务能力。这些AUV的人体致动为压电能量收集器提供了从机械运动中清除电能的平台。这些AUV所启发的动物运动可以在时空函数中以不同的包络约束来表示,以代表Anguilliform,Subcarangiform,Carangiform和Thunniform运动。通过考虑由于这些系统的大变形而引起的高阶非线性项,可以更好地近似应变。利用吉布斯函数更好地近似压电材料的非线性本构关系。进行了参数研究,以研究在各种长度和放置条件下,每次运动下非线性应变和非线性压电材料的性能如何影响BCF能量收集器的性能。结果表明,当对这些类型的波动运动采用线性假设时,由于低估了采集的功率,因此需要考虑高阶应变。结果表明,假设负载电阻R-opt近似为1 /C-ωΩ,会过度逼近非线性压电材料模型的电阻。该分析表明了包括归因于压电材料和大变形的非线性的重要性,以便准确地估计所收集的功率的水平及其最佳配置。

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