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Numerical investigation of nonlinear mechanical and constitutive effects on piezoelectric vibration-based energy harvesting

机译:非线性机械和本构效应对压电振动的能量收割的数值研究

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Vibration-based energy harvesting has the main objective to convert available environmental mechanical energy into electrical energy. Piezoelectric materials are usually employed to promote the mechanical-electrical conversion. This work deals with a numerical investigation that analyzes the influence of nonlinear effects in piezoelectric vibration-based energy harvesting. Duffing-type oscillator that can be either monostable or bistable represents mechanical nonlinearities. A quadratic constitutive electro-mechanical coupling model represents piezoelectric nonlinearities. The system performance is evaluated for different system characteristics being monitored by the input and the generated power. Numerical simulations are carried out exploring dynamical behavior of energy harvesting system evaluating different kinds of responses, including periodic and chaotic regimes.
机译:基于振动的能量收集主要目的是将可用的环境机械能转化为电能。 通常采用压电材料来促进机械电气转化。 这项工作涉及一个数值研究,分析了非线性效应对基于压电振动的能量收集的影响。 Duffing型振荡器可以是单稳态或双稳态代表机械非线性。 二次组成型电力机械耦合模型代表压电非线性。 为输入和生成的电源监视不同的系统特征,评估系统性能。 进行了数值模拟,探讨了评估不同种类的响应的能量收集系统的动态行为,包括定期和混沌制度。

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