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首页> 外文期刊>Applied Mathematical Modelling >Stochastic resonance in a piecewise bistable energy harvesting model driven by harmonic excitation and additive Gaussian white noise
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Stochastic resonance in a piecewise bistable energy harvesting model driven by harmonic excitation and additive Gaussian white noise

机译:由谐波激发和添加剂高斯白噪声驱动的分段双稳态能量收集模型中的随机共振

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Strategies for the energy harvesting of low-frequency vibration modes such as sphygmus and human body motions are immature due to the rigorous resonance issue. Stochastic resonance seems to be an appropriate solution to the energy harvesting of low-frequency vibrations. This paper presented the mathematical model of piecewise bistable energy harvesters and solved numerically. Taking the piecewise slope into consideration, the Kramers rate and signal to noise ratio (SNR) of piecewise bistable systems were studied, and the effects of piecewise slope on dynamic output characteristics of piecewise bistable energy harvesters were analyzed. The effect of load resistance on the efficiency of energy harvesting of piecewise bistable energy harvesters compared with their counterparts is evaluated. Furthermore, the influences of ambient periodic excitation and additive noise on the energy harvesting performance of piecewise bistable energy harvesters were investigated. Additionally, the evaluation of piecewise bistable energy harvesters using the measured input signal was completed. The numerical simulations indicate that piecewise bistable energy harvesters with small piecewise slope make great contributions to the enhancement of SNR and energy harvesting; the increases in resonant amplitude of ambient periodic excitation or additive noise intensity cause the transition from monostable to bistable, and piecewise bistable systems with smaller piecewise slope have larger unsaturation for ambient energy harvesting. The maximum electric power can be achieved by using optimal load resistance which can be identified numerically. The evaluation of piecewise bistable energy harvesters by employing the measured input signal shows that piecewise bistable energy harvesters with small piecewise slope perform satisfactory under ultra-low frequency excitation.
机译:由于严格的共振问题,低频振动模式的低频振动模式(如脊髓振动和人体运动)的策略是不成熟的。随机共振似乎是对低频振动能量采伐的适当解决方案。本文介绍了分段双稳态能量收割机的数学模型,在数值上解决。考虑分段斜率,研究了分段双稳态系统的克拉姆率和信噪比(SNR),分析了分段斜率对分段双稳态能量收割机的动态输出特性的影响。评估了负载对分段双稳态能量收割机的能量收集效率的影响与对应物相比。此外,研究了环境周期性激励和添加剂噪声对分段抗体能量收割机的能量采伐性能的影响。另外,完成了使用测量输入信号的分段双稳态能量收割机的评估。数值模拟表明,具有小型坡度的分段双稳态能量收割机对SNR和能量收集的增强做出了巨大贡献;环境周期性激发或加性噪声强度的共振幅度的增加导致从单稳态到双稳态的过渡,并且具有较小分段斜率的分段双稳态系统具有更大的环境能量收集的不饱和度。通过使用可以在数字上识别的最佳载荷电阻可以实现最大电力。通过采用测量的输入信号评估分段双稳态能量收割机的评价显示,在超低频率激发下,具有小分段斜率的分段抗体能量收割机的令人满意。

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