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首页> 外文期刊>Journal of intelligent material systems and structures >On the performance of a dual-mode non-linear vibration energy harvesting device
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On the performance of a dual-mode non-linear vibration energy harvesting device

机译:双模非线性振动能量采集装置的性能研究

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The research trend for harvesting energy from the ambient vibration sources has moved from using a linear resonant generator to a non-linear generator in order to improve on the performance of a linear generator; for example, the relatively small bandwidth, intolerance to mistune and the suitability of the device for low-frequency applications. This article presents experimental results to illustrate the dynamic behaviour of a dual-mode non-linear energy-harvesting device operating in hardening and bi-stable modes under harmonic excitation. The device is able to change from one mode to another by altering the negative magnetic stiffness by adjusting the separation gap between the magnets and the iron core. Results for the device operating in both modes are presented. They show that there is a larger bandwidth for the device operating in the hardening mode compared to the equivalent linear device. However, the maximum power transfer theory is less applicable for the hardening mode due to occurrence of the maximum power at different frequencies, which depends on the non-linearity and the damping in the system. The results for the bi-stable mode show that the device is insensitive to a range of excitation frequencies depending upon the input level, damping and non-linearity.
机译:为了改善线性发电机的性能,从环境振动源中收集能量的研究趋势已经从使用线性谐振发电机转变为非线性发电机。例如,相对较小的带宽,对失调的容忍度以及该设备对低频应用的适用性。本文提供了实验结果,以说明在谐波激励下以硬化和双稳态模式运行的双模式非线性能量收集设备的动态行为。通过调节磁体和铁芯之间的间隙,可以通过改变负磁刚度来使设备从一种模式切换到另一种模式。给出了在两种模式下运行的设备的结果。他们表明,与等效的线性设备相比,以强化模式运行的设备具有更大的带宽。但是,由于在不同频率下会出现最大功率,因此最大功率传输理论不太适用于硬化模式,这取决于系统中的非线性和阻尼。双稳态模式的结果表明,该器件对一系列激励频率不敏感,具体取决于输入电平,阻尼和非线性。

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