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首页> 外文期刊>Journal of intelligent material systems and structures >Parameter sensitivity of an in-plane gap closing electrostatic energy harvester with end-stop impacts
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Parameter sensitivity of an in-plane gap closing electrostatic energy harvester with end-stop impacts

机译:带有终端止动的平面间隙封闭式静电能量采集器的参数灵敏度

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Conventionally modeled as spring-damper system, the end-stops in vibration energy harvesters set a limit to the displacement of the proof mass at sufficiently high excitation levels. In some studies, it is seen that the end-stop parameters needed adjustment to fit the simulations to the measurements at particular operating condition. In this article, the discrepancy between the simulation and measurement results on varying the operating condition is investigated in detail. A check on sensitivity of an electrostatic in-plane gap closing energy harvester to the parameters end-stop stiffness, end-stop damping, and end-stop position at various biases and excitation levels is performed. The simulations at 3-V bias and root mean square (RMS) acceleration amplitude 0.6g show a remarkable variation of 30Hz in up-sweep jump-down frequency on varying end-stop position by 0.12 mu m. The simulation results also show a significant increase in sensitivity of up-sweep jump-down frequency to end-stop damping on increasing excitation level at fixed bias. The article also discusses the sensitivity in jump frequencies to perturbations in the excitation signal due to the presence of noise, where the jump-down frequency becomes smaller as the noise level increases. The trajectories studied at 8-V bias and RMS acceleration amplitude 0.6g with different end-stop parameters show a strong influence of the end-stop model parameters on the motion of the proof mass. A lumped model of the device is fitted to the measurements for a whole range of operating conditions with one fixed set of model parameter, where asymmetric end-stop positions and their effect on the device behavior are shown to be crucial. The results presented in this article show that in order to reproduce and analyze the measured behavior of the harvester over a range of operating conditions, very fine details in the model are significant.
机译:传统上建模为弹簧阻尼器系统,振动能量采集器中的挡块在足够高的激励水平下限制了质量块的位移。在某些研究中,可以看到需要对终端参数进行调整,以使模拟适合特定操作条件下的测量结果。在本文中,详细研究了在变化的工作条件下仿真结果与测量结果之间的差异。进行了静电面内间隙封闭能量采集器对各种偏置和激励水平下的终端止动刚度,终端止动阻尼和终端止动位置参数的敏感性的检查。在3-V偏置和均方根(RMS)加速度振幅为0.6g的情况下进行的仿真显示,在变化的终点止动位置上,上扫下跳频率的30Hz显着变化为0.12μm。仿真结果还表明,在固定偏置下增加激励水平时,上扫跳变频率对端部阻尼的灵敏度显着提高。本文还讨论了由于噪声的存在,跳变频率对激励信号中的扰动的敏感性,其中,随着噪声水平的提高,跳变频率变小。在8V偏置和RMS加速度振幅为0.6g且具有不同的终点止动参数的情况下研究的轨迹显示,终点止动模型参数对检验质量的运动有很大影响。该设备的集总模型适用于具有一组固定的模型参数的整个操作条件范围的测量,其中非对称的终端位置及其对设备性能的影响被证明是至关重要的。本文提供的结果表明,为了在一系列操作条件下重现和分析收割机的测量行为,模型中的非常精细的细节非常重要。

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