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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Theory of energy harvesting from heartbeat including the effects of pleural cavity and respiration
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Theory of energy harvesting from heartbeat including the effects of pleural cavity and respiration

机译:从心跳中的能量收集理论,包括胸腔腔和呼吸的影响

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摘要

Self-powered implantable devices with flexible energy harvesters are of significant interest due to their potential to solve the problem of limited battery life and surgical replacement. The flexible electronic devices made of piezoelectric materials have been employed to harvest energy from the motion of biological organs. Experimental measurements show that the output voltage of the device mounted on porcine left ventricle in chest closed environment decreases significantly compared to the case of chest open. A restricted-space deformation model is proposed to predict the impeding effect of pleural cavity, surrounding tissues, as well as respiration on the efficiency of energy harvesting from heartbeat using flexible piezoelectric devices. The analytical solution is verified by comparing theoretical predictions to experimental measurements. A simple scaling law is established to analyse the intrinsic correlations between the normalized output power and the combined system parameters, i.e. the normalized permitted space and normalized electrical load. The results may provide guidelines for optimization of in vivo energy harvesting from heartbeat or the motions of other biological organs using flexible piezoelectric energy harvesters.
机译:由于解决电池寿命有限的问题和手术替代的潜力,具有柔性能量收割机的自动植入装置具有重要兴趣。由压电材料制成的柔性电子器件已经用于从生物器官的运动中收获能量。实验测量结果表明,与胸部开放的情况相比,安装在胸部闭合环境中的猪留气左心室的设备的输出电压显着降低。提出了一种限制空间变形模型,以预测胸腔腔,周围组织的阻抗效果以及使用柔性压电装置从心跳中的能量收集效率的呼吸。通过将理论预测与实验测量的理论预测进行比较来验证分析解决方案。建立一个简单的缩放法,以分析归一化输出功率和组合系统参数之间的内在相关性,即归一化允许的空间和归一化电负载。结果可以提供用于使用柔性压电能量收割机从心跳或其他生物器官的运动的体内能量收集的优化指导方针。

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