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The Design of an Energy Harvesting Device for Prolonging the Working Time of DC Equipment

机译:延长直流设备工作时间的能量收集装置的设计

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Energy harvesting (EH) derives from the idea of converting the ambient energy into electric energy, which can solve the problem of DC supply for some electronic equipment. PZT is a typical piezoelectric material of inorganic, which has been developed as EH devices to transfer ambient vibration energy into electric energy. However, these PZT devices require relatively violent excitation, and easy to be fatigue fracture under the resonance condition. In this paper, PVDF, which is a kind of soft piezoelectric polymer, is adopted for developing transducer. The PVDF devices are flexible and have longer life time than PZT devices under the harmonic environment. The EH researches are mainly focused on the development of energy transfer efficiency either by the mechanical structure of transducer or the improvement of circuit. However, the practicality and stability of the EH devices are important in the practical engineering applications. In this paper, a charge amplifier is introduced in the circuit in order to guarantee the stability of the battery charging under small ambient vibration conditions. The model of the mechanical structure of PVDF and the electric performance of circuit are developed. The experimental results and simulation show that the stability of battery charging is improved and the working time of DC equipment is prolonged.
机译:能量收集(EH)来自将环境能量转换为电能的想法,它可以解决某些电子设备的直流电源问题。 PZT是一种典型的无机压电材料,已被开发为EH装置,可将环境振动能量转换为电能。然而,这些PZT器件需要相对剧烈的激励,并且在共振条件下容易疲劳断裂。本文采用PVDF(一种柔软的压电聚合物)开发传感器。在谐波环境下,PVDF设备比PZT设备灵活,使用寿命更长。 EH的研究主要集中在通过换能器的机械结构或电路的改进来提高能量传输效率。但是,EH设备的实用性和稳定性在实际工程应用中很重要。在本文中,在电路中引入了一个电荷放大器,以确保在较小的环境振动条件下电池充电的稳定性。建立了PVDF的机械结构模型和电路的电气性能。实验结果和仿真结果表明,改进了电池充电的稳定性,延长了直流设备的工作时间。

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